Personal académico

• Laboratorio de Ecofisiología Aplicada • Laboratorio de Ecofisiología Aplicada • Laboratorio de Ecofisiología Aplicada • Laboratorio de Ecofisiología Aplicada
Claudia Patricia Caamal Monsreal

Extensión 7220
Bióloga, egresada del Instituto de Conkal, Yucatán; Maestra en Ciencias por el Posgrado en Ciencias del Mar y Limnología de la UNAM. Desempeño como Técnica Académica Titular C de Tiempo Completo; Definitiva en la Unidad Multidisciplinaria de Docencia e Investigación, Facultad de Ciencias, UNAM-Sisal, siendo la responsable del Laboratorio de Ecofisiología Aplicada de la UMDI, Sisal. Especialista en el manejo y cultivo del cefalópodo Octopus maya, tiene como línea de investigación la ecofisiología de otros organismos acuáticos (peces, moluscos y crustáceos), principalmente. Participo activamente en diversos proyectos de investigación, soy coautora de publicaciones en revisas indexadas y capítulos de libro con ISBN. Cuento con experiencia en la formación de recursos humanos en los niveles de bachillerato, licenciatura y posgrado, imparto cursos dentro del programa de Especialización en Producción Animal: Organismos Acuáticos de la Facultad de Medicina Zootecnia de la UNAM y en la Licenciatura en Manejo Sustentable de la Zona Costera (ENES-UNAM).
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2025 | Gleadall, I., Villanueva, R., Barord, G., Doubleday, Z., Aguado-Giménez, F., Akiyama, N., Almansa, E., Ames, C., Arkhipkin, A., Avendaño, O., Barrett, C., Bello, G., Bower, J., Braga, R., Briceño, F., Bustamante, P., Caamal-Monsreal, C., Cabanellas-Reboredo, M., Carrasco, S, ..., Zoral, M. (2025). A balanced approach to the potential of octopus aquaculture. Marine Policy, 179, 106682. DOI: https://doi.org/10.1016/j.marpol.2025.106682. |
| 2024 | Chávez Solís, E., Mascaró, M., Rosas, C., Rodríguez-Fuentes, G., Caamal-Monsreal, C., Paschke, K., Díaz, F., Re-Araujo, D. (2024). Are haloclines distributional barriers in anchialine ecosystems? Physiological response of cave shrimps to salinity. Plos one, 19(7), e0305909. DOI: https://doi.org/10.1371/journal.pone.0305909. |
| 2024 | González-Gómez, R., Avendaño, O., Barriga-Sosa, I., Bastos, P., Caamal-Monsreal, C., Castillo-Estrada, G., Cedillo-Robles, C., Daw, A., Díaz-Santana-Iturrios, M., Galindo-Cortes, G., Guerrero-Kommritz, J., Haimovici, M., Ibáñez, C., Jiménez-Badillo, M., Larson, P., Leite, T., Lima, F., Markaida, U., Meiners-Mandujano, C., ..., Gleadall, I. (2024). Biodiversity of octopuses in the Americas. Marine Biology, 171 (10), 189. DOI https://doi.org/10.1007/s00227-024-04489-0. |
| 2024 | Ramos-Rodríguez, S., Ortega-Ramírez, K., Méndez-Can, L., Galindo-Sánchez, C., Galindo-Torres, P., Ventura-López, C., Mascaró, M., Caamal-Monsreal, C., Rodríguez, G., Díaz, F., Rosas, C. (2024). The hard life of an octopus embryo is seen through gene expression, energy metabolism, and its ability to neutralize radical oxygen species. Scientific Reports, 14 (1), 16510. DOI: https://doi.org/10.1038/s41598-024-67335-9. |
| 2024 | Rosas, C., Markaida, U., López-Rocha, J., Díaz, F., Re, D., Caamal-Monsreal, C., Gallardo, P., Pascual, C., Galindo-Sánchez, C., Juárez, O., López-Galindo, L., Ventura-López, C. (2024). Octopus maya, the mayan octopus. Octopus Biology and Ecology, 95-117. DOI: https://doi.org/10.1016/B978-0-12-820639-3.00009-1. |
| 2024 | Maraschi, A., Rubio-Lopez, C., Snitman, S., Souza, I., Pichardo-Casales, B., Alcaraz, G., Monferrán, M., Wunderlin, D., Caamal-Monsreal, C., Rosas, C., Fernandes, M., Capparelli, M. (2024). The impact of settleable atmospheric particulate on the energy metabolism, biochemical processes, and behavior of a sentinel mangrove crab. Journal of Hazardous Materials, 477, 135316. DOI: https://doi.org/10.1016/j.jhazmat.2024.135316. |
| 2024 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Fabian-Canseco, L., Gallardo, P., Moguel-Ojeda, C., Caamal-Monsreal, C., Sánchez-Arteaga, A., Rosas, C. (2024). Evaluation of Octopus maya enzyme activity of the digestive gland and gastric juice. Biology Open, 13 (9). DOI: https://doi.org/10.1242/bio.060429. |
| 2023 | Escamilla-Aké, Á., Ángeles-González, L., Kurczyn, A., Caamal-Monsreal, C., Rosas, C. (2024). How to quantify the regional effects of ocean temperature rise due to climate change: implications of Octopus maya ecophysiology on food security of the Yucatan. Regional Environmental Change, 24 (2), 81. DOI: https://doi.org/10.1007/s10113-024-02236-1. |
| 2023 | Domínguez-Castanedo, O., Palomino-Cruz, D., Mascaró, M., Rodríguez-Fuentes, G., Juárez, O., Galindo-Sánchez, C., Caamal-Monsreal, C., Torres, P., Díaz, F., Rosas, C. (2023). Trans-generational physiological condition of embryos is conditioned by maternal thermal stress in Octopus maya. Marine Biology, 170 (4), 41. DOI: https://doi.org/10.1007/s00227-023-04183-7. |
| 2023 | Ángeles-González, L., Re-Araujo, A., Díaz, F., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Galindo-Sánchez, C., Mascaró, M., Pascual, C., Rosas, C. (2023). Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. Journal of Thermal Biology, 114, 103495. DOI: https://doi.org/10.1016/j.jtherbio.2023.103495. |
| 2023 | Vargas-Abúndez, J., Plata-Díaz, A., Mascaró, M., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Jiménez-Be, A., Rosas, C. (2023). Maternal temperature stress modulates acclimation and thermal biology in Octopus maya (cephalopoda: octopodidae) juvenile progeny. Marine Biology, 170, 56. DOI: https://doi.org/10.1007/s00227-023-04200-9. |
| 2023 | Aguilar, L., Moreno-Ortiz, G., Caamal-Monsreal, C., Rosas, C., Noreña-Barroso, E., Gómez-Maldonado, M., Rodríguez-Fuentes, G. (2023). Effects of phenanthrene exposure on the b-esterases activities of Octopus maya (Voss and Solís Ramírez, 1996) embryos. Bulletin of Environmental Contamination and Toxicology, 110 (3), 63. DOI: https://doi.org/10.1007/s00128-023-03706-8. |
| 2023 | Garcia-Rueda, A., Mascaró, M., Rodriguez-Fuentes, G., Caamal-Monsreal, C., Díaz, F., Paschke, K., Rosas, C. (2023). Moderate hypoxia mitigates the physiological effects of high temperature on the tropical blue crab Callinectes sapidus. Frontiers in Physiology, 13, 1089164. DOI: https://doi.org/10.3389/fphys.2022.1089164. |
| 2023 | Escamilla‐Aké, Á., Ángeles-González, L., Caamal‐Monsreal, C., Rosas, C. (2023). A general model fitting coleoid cephalopod growth as a function of time and temperature to a single curve. Aquaculture, Fish and Fisheries, 3 (6), 539-549. DOI: https://doi.org/10.1002/aff2.133. |
| 2023 | Moreno-Ortiz, G., Aguilar, L., Caamal-Monsreal, C., Noreña-Barroso, E., Rosas, C., Rodríguez-Fuentes, G. (2023). Benzophenone-3 does not cause oxidative stress or b-esterase inhibition during embryo development of Octopus maya (Voss and Solís Ramírez, 1966). Bulletin of Environmental Contamination and Toxicology, 111 (5), 60. DOI: https://doi.org/10.1007/s00128-023-03788-4. |
| 2022 | Meza-Buendia, A., Aparicio-Trejo, O., Díaz, F., Caamal-Monsreal, C., Pedraza-Chaverri, J., Álvarez-Delgado, C., Paschke, K., Rosas, C. (2022). High resolution respirometry of isolated mitochondria from adult Octopus maya (class: cephalopoda) systemic heart. PloS one, 17 (8), e0273554. DOI: https://doi.org/10.1371/journal.pone.0273554. |
| 2022 | Tremblay, N., García‐Guerrero, M., Díaz, F., Caamal‐Monsreal, C., Rodríguez‐Fuentes, G., Paschke, K., Gebauer, P., Rosas, C. (2022). Long‐term mild hypoxia does not reduce thermal tolerance or performance of the freshwater prawn Macrobrachium tenellum. Aquaculture Research, 53 (1), 63-74. DOI: https://doi.org/10.1111/are.15553. |
| 2021 | Meza‐Buendía, A., Trejo‐Escamilla, I., Piu, M., Caamal‐Monsreal, C., Rodríguez‐Fuentes, G., Díaz, F., Re, D., Galindo‐Sánchez, C., Rosas, C. (2021). Why high temperatures limit reproduction in cephalopods? The case of Octopus maya. Aquaculture Research, 52 (11), 5111-5123. DOI: https://doi.org/10.1111/are.15387. |
| 2021 | García-Rueda, A., Tremblay, N., Mascaró, M., Díaz, F., Paschke, K., Caamal-Monsreal, C., Rosas, C. (2021). The thermal tolerance of a tropical population of blue crab (Callinectes sapidus) modulates aerobic metabolism during hypoxia. Journal of Thermal Biology, 102, 103078. DOI: https://doi.org/10.1016/j.jtherbio.2021.103078. |
| 2020 | Ángeles-González, L., Lima, F., Caamal-Monsreal, C., Díaz, F., Rosas, C. (2020). Exploring the effects of warming seas by using the optimal and pejus temperatures of the embryo of three octopoda species in the Gulf of Mexico. Journal of Thermal Biology, 94, 102753. DOI: https://doi.org/10.1016/j.jtherbio.2020.102753. |
Maite Mascaró

Extensión 7135
Me desarrollo en el campo de la biología experimental con interés en la ecofisiología y comportamiento de especies clave en programas de conservación, acuicultura y pesca. Entre los modelos biológicos que constituyen mis objetos de estudio destacan los caballitos de mar Hippocampus erectus, crustáceos del género Typhlatya, el pulpo Octopus maya, y más recientemente, las babosas del género Elysia spp capaces de obtener energía por fotosíntesis (cleptoplastia). Mi investigación actual se centra en la respuesta adaptativa de los organismos a las variaciones de temperatura, salinidad, oxígeno disuelto e intensidad de luz a través de diferentes escalas espaciales y temporales. En cuanto a mi labor docente, tengo más de 25 años impartiendo asignaturas relacionadas con el diseño experimental y análisis de datos obtenidos en diversos contextos de investigación en ciencias ambientales, y he dedicado una buena parte de su tiempo a desarrollar estrategias para mejorar la enseñanza de la estadística a estudiantes no-matemáticos mediante actividades de programación computacional (utilizando código R) y tareas colaborativas en el aula.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2025 | Rey, F., Vital, X. G., Cruz, S., Melo, T., Lopes, D., Calado, R., Simões, N., Mascaró, M., Domingues, M. R. (2025). Habitat shapes the lipidome of the tropical photosynthetic sea slug Elysia crispata. Marine Life Science & Technology, 1-15. DOI: https://doi.org/10.1007/s42995-025-00281-1. |
| 2025 | Gleadall, I ., Villanueva, R ., Barord, G ., Doubleday, Z ., Aguado-Giménez, F ., Akiyama, N ., Almansa, E ., Ames, C ., Arkhipkin, A ., Avendaño, O ., Barrett, C ., Bello, G ., Bower, J ., Braga, R ., Briceño, F ., Bustamante, P ., Caamal-Monsreal, C ., Cabanellas-Reboredo, M ., Carrasco, S ., ..., Zoral, M . (2025). A balanced approach to the potential of octopus aquaculture. Marine Policy, 179, 106682. DOI: https://doi.org/10.1016/j.marpol.2025.106682. |
| 2024 | Sánchez‐Becerril, O., Seijo Gutiérrez, J. C., Vela Magaña, M. A., Mascaró, M., & Simões, N. (2024). Bioeconomics of juvenile seahorse (Hippocampus erectus) culture: Optimal harvest time. Journal of the World Aquaculture Society, 55(4), e13076. |
| 2024 | Chávez Solís, E., Mascaró, M., Rosas, C., Rodríguez-Fuentes, G., Caamal-Monsreal, C., Paschke, K., Díaz, F., Re-Araujo, D. (2024). Are haloclines distributional barriers in anchialine ecosystems? Physiological response of cave shrimps to salinity. Plos one, 19(7), e0305909. DOI: https://doi.org/10.1371/journal.pone.0305909. |
| 2024 | Santiago, I., Rosas, C., Cruz‐López, H., Domingues, P., Pascual, C., Mascaró, M., Sanchez‐Arteaga, A., Caamal, C., Gallardo, P. (2024). Growth, survival, digestive activity and respiratory metabolism of Octopus maya juveniles fed with prepared diets. Journal of Animal Physiology and Animal Nutrition, 108 (5), 1383-1392. DOI: https://doi.org/10.1111/jpn.13976. |
| 2024 | Ramos-Rodríguez, S., Ortega-Ramírez, K., Méndez-Can, L., Galindo-Sánchez, C., Galindo-Torres, P., Ventura-López, C., Mascaró, M., Caamal-Monsreal, C., Rodríguez, G., Díaz, F., Rosas, C. (2024). The hard life of an octopus embryo is seen through gene expression, energy metabolism, and its ability to neutralize radical oxygen species. Scientific Reports, 14 (1), 16510. DOI: https://doi.org/10.1038/s41598-024-67335-9. |
| 2024 | Vecchio, G., Rodríguez‐Fuentes, G., Rosas, C., Mascaró, M. (2024). Thermoregulatory response in juvenile Hippocampus erectus: effect of magnitude and rate of thermal increase on metabolism and antioxidative defence. Ecology and evolution, 14 (2), e10977. DOI: https://doi.org/10.1002/ece3.10977. |
| 2023 | Domínguez-Castanedo, O., Palomino-Cruz, D., Mascaró, M., Rodríguez-Fuentes, G., Juárez, O., Galindo-Sánchez, C., Caamal-Monsreal, C., Torres, P., Díaz, F., Rosas, C. (2023). Trans-generational physiological condition of embryos is conditioned by maternal thermal stress in Octopus maya. Marine Biology, 170 (4), 41. DOI: https://doi.org/10.1007/s00227-023-04183-7. |
| 2023 | Ángeles-González, L., Re-Araujo, A., Díaz, F., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Galindo-Sánchez, C., Mascaró, M., Pascual, C., Rosas, C. (2023). Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. Journal of Thermal Biology, 114, 103495. DOI: https://doi.org/10.1016/j.jtherbio.2023.103495. |
| 2023 | Vargas-Abúndez, J., Plata-Díaz, A., Mascaró, M., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Jiménez-Be, A., Rosas, C. (2023). Maternal temperature stress modulates acclimation and thermal biology in Octopus maya (cephalopoda: octopodidae) juvenile progeny. Marine Biology, 170 (5), 56. DOI: https://doi.org/10.1007/s00227-023-04200-9. |
| 2023 | Garcia-Rueda, A., Mascaró, M., Rodriguez-Fuentes, G., Caamal-Monsreal, C., Díaz, F., Paschke, K., Rosas, C. (2023). Moderate hypoxia mitigates the physiological effects of high temperature on the tropical blue crab Callinectes sapidus. Frontiers in Physiology, 13, 1089164. DOI: https://doi.org/10.3389/fphys.2022.1089164. |
| 2023 | Vital, X., Simões, N., Cruz, S., Mascaró, M. (2023). Photosynthetic animals and where to find them: abundance and size of a solar-powered sea slug in different light conditions. Marine Biology, 170 (12), 154. DOI: https://doi.org/10.1007/s00227-023-04301-5. |
| 2022 | Vecchio, G., Galindo-Sánchez, C., Tripp-Valdez, M., López-Landavery, E., Rosas, C., Mascaró, M. (2022). Transcriptomic response in thermally challenged seahorses Hippocampus erectus: the effect of magnitude and rate of temperature change. Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular …, . DOI: https://doi.org/10.1016/j.cbpb.2022.110771 |
| 2022 | Solís, C., Chávez-Solís, E., Rodríguez-Ceja, M., Méndez-García, C., Ortíz, E., Canto, C., Martínez-Carrillo, M., Mascaró, M. (2022). Linking radiocarbon and trophic webs in karstic groundwater ecosystems in the Yucatan Peninsula, Mexico. Radiocarbon, 64 (6), 1629-1639. DOI: https://doi.org/10.1017/RDC.2022.100. |
| 2022 | Pascual, C., Rodríguez-Canul, R., Huchin-Mian, J., Mascaró, M., Briones-Fourzán, P., Lozano-Álvarez, E., Sánchez-Arteaga, A., Escalante, K. (2022). Immune response to natural and experimental infection of Panulirus argus virus 1 (pav1) in juveniles of caribbean spiny lobster. Animals, 12 (15), 1951. DOI: https://doi.org/10.3390/ani12151951. |
| 2022 | Chávez-Solís, E., Díaz, F., Paschke, K., Re, D., Rosas, C., Rodríguez-Fuentes, G., Tremblay, N., Mascaró, M. (2022). Physiological characterization of Typhlatya cave shrimps: linking habitat with aerobic metabolism. Frontiers in Marine Science, 9, 892274. DOI: https://doi.org/10.3389/fmars.2022.892274. |
| 2021 | Vargas-Abúndez, J., López-Vázquez, H., Mascaró, M., Martínez-Moreno, G., Simões, N. (2021). Marine amphipods as a new live prey for ornamental aquaculture: exploring the potential of Parhyale hawaiensis and Elasmopus pectenicrus. PeerJ, 9, e10840. DOI: https://doi.org/10.7717/peerj.10840. |
| 2021 | Guerra‐Castro, E., Cajas, J., Simões, N., Cruz‐Motta, J., Mascaró, M. (2021). SSP: an R package to estimate sampling effort in studies of ecological communities. Ecography, 44 (4), 561-573. DOI: https://doi.org/10.1111/ecog.05284. |
| 2021 | García-Rueda, A., Tremblay, N., Mascaró, M., Díaz, F., Paschke, K., Caamal-Monsreal, C., Rosas, C. (2021). The thermal tolerance of a tropical population of blue crab (Callinectes sapidus) modulates aerobic metabolism during hypoxia. Journal of Thermal Biology, 102, 103078. DOI: https://doi.org/10.1016/j.jtherbio.2021.103078. |
| 2021 | Macario-González, L., Cohuo, S., Angyal, D., Pérez, L., Mascaró, M. (2021). Subterranean waters of Yucatan Peninsula, Mexico reveal epigean species dominance and intraspecific variability in freshwater ostracodes (crustacea: ostracoda). Diversity, 13 (2), 44. DOI: https://doi.org/10.3390/d13020044 |
| 2021 | Vargas-Abúndez, J., Martínez-Moreno, G., Simões, N., Noreña-Barroso, E., Mascaró, M. (2021). Marine amphipods (Parhyale hawaiensis) as an alternative feed for the lined seahorse (Hippocampus erectus, perri 1810): nutritional value and feeding trial. PeerJ, 9, e12288. DOI: https://doi.org/10.7717/peerj.12288. |
| 2021 | Pérez-Botello, A., Mascaró, M., Simões, N. (2021). The importance of home cleaning: sediment transport by alpheid shrimps provides a competitive advantage to their host anemones. Frontiers in Marine Science, 8, 677024. DOI: https://doi.org/10.3389/fmars.2021.677024. |
| 2020 | Chávez-Solís, E., Solís, C ., Simões, N., Mascaró, M. (2020). Distribution patterns, carbon sources and niche partitioning in cave shrimps (Atyidae: Typhlatya). Scientific reports, 10 (1), 12812. DOI: https://doi.org/10.1038/s41598-020-69562-2. |
| 2020 | Angyal, D., Chávez-Solís, E., Liévano-Beltrán, L., Magaña, B., Simões, N., Mascaró, M. (2020). New distribution records of subterranean crustaceans from cenotes in Yucatan (Mexico). ZooKeys, 911, 21-49. DOI: https://doi.org/10.3897/zookeys.911.47694. |
| 2020 | Gallardo, P., Villegas, G., Rosas, C., Domingues, P., Pascual, C., Mascaró, M., Sánchez-Arteaga, A., Estefanell, J., Rodríguez, S. (2020). Effect of different proportions of crab and squid in semi-moist diets for Octopus maya juveniles. Aquaculture, 524, 735233. DOI: https://doi.org/10.1016/j.aquaculture.2020.735233. |
| 2020 | Pascual, C., Cruz-Lopez, H., Mascaró, M., Gallardo, P., Sánchez, A., Domingues, P., Rosas, C. (2020). Changes in biochemical composition and energy reserves associated with sexual maturation of Octopus maya. Frontiers in physiology, 11, 22. DOI: https://doi.org/10.3389/fphys.2020.00022. |
| 2020 | Guerra-Castro, E., Hidalgo, G., Castillo-Cupul, R., Muciño-Reyes, M., Noreña-Barroso, E., Quiroz-Deaquino, J., Mascaró, M., Simoes, N. (2020). Sandy beach macrofauna of Yucatán state (Mexico) and oil industry development in the Gulf of Mexico: first approach for detecting environmental impacts. Frontiers in Marine Science, 7, 589656. DOI: https://doi.org/10.3389/fmars.2020.589656. |
| 2020 | Angyal, D., Simões, N., Mascaró, M. (2020). Uptaded checklist, historical overview and illustrated guide to the Stygobiont malacostraca (arthropoda: crustacea) species of Yucatan (Mexico). Subterranean Biology, 36, 93-108. DOI: https://doi.org/10.3897/subtbiol.36.53558. |
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2024 | Arenas-Pardo, M., Gaxiola-Cortés, M., Barreto-Altamirano, A., Paredes-Medina, A., Palomino-Albarrán, I., Balam-Uc, P., Maldonado-Flores, J., Álvarez-González, C. (2024). Changes in Digestive Enzyme Activities during Larval Development of Spotted Seatrout (Cynoscion nebulosus). Aquaculture Nutrition, 2024(1), 1309390. DOI: https://doi.org/10.1155/2024/1309390. |
| 2023 | de Monserrat González-Balderas, R., Toledo-Thompson, T., Rosas-Vázquez, C., Palomino-Albarrán, I., Valdez-Ojeda, R. (2023). Efecto de la relación N/P en la producción de biomasa de microalgas cultivadas en agua residual acuícola. Tendencias en energías renovables y sustentabilidad, 2(1), 46-46. DOI: https://doi.org/10.56845/terys.v2i1.330. |
| 2023 | Carrillo-Yam, C., Chavarría-Hernández, J., Toledano-Thompson, T., Valdez-Ojeda, R., Palomino-Albarrán, I. (2023). Cultivo de microalgas marinas oleaginosas NSRE-1 (Nannochloropsis sp.) y NRRE-1 (Nannochloris sp.) para la producción de biogasolina a partir de sus fracciones lipídicas. Tendencias en energías renovables y sustentabilidad, 2(1), 38-38. DOI: https://doi.org/10.56845/terys.v2i1.321. |
| 2022 | Sacristán de-Alva, M., Noreña-Barroso, E., Guerra-Castro, E., Palomino-Albarrán, I. G., Barreto, Á., Gaxiola, G. (2022). Fatty acid profile and productivity variation during the growth of Dunaliella sp. under different photon flux densities and glycerol concentrations. Latin american journal of aquatic research, 50(2), 236-250. DOI: https://doi.org/10.3856/vol50-issue2-fulltext-2815. |
Cristina Pascual Jiménez

Extensión 7148
Profesora de Carrera Titular B en la Unidad Multidisciplinaria de Docencia e Investigación de Sisal, también desempeña el cargo de Profesora de Asignatura A.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2025 | Gleadall, I. G., Villanueva, R., Barord, G. J., Doubleday, Z., Aguado-Giménez, F., Akiyama, N., ... & Zoral, M. A. (2025). A balanced approach to the potential of octopus aquaculture. Marine Policy, 179, 106682. |
| 2025 | Ángeles-González, L, Alvarez‐Lee, L., Osorio‐Olvera, L., López‐Ripoll, E., Díaz, F., Rosas, C., Cruz-López, H., Pascual, C. (2025). Linking inferred laboratory‐derived temperature stress to the immunocompetence of wild Octopus maya (Mayan octopus) GL Voss & Solís, 1966. Ecology and Evolution, 15(3), e70805. DOI: https://doi.org/10.1002/ece3.70805. |
| 2025 | Cruz-López, H., Pascual, C., Sanchez, M., Domingues, P., Rosas, C., Gallardo, P. (2025). Protein hydrolysates from fish wastes: nutritional characteristics and its inclusion in diets for Octopus maya. PLoS One, 20(4), e0321572. DOI: https://doi.org/10.1371/journal.pone.0321572. |
| 2024 | Rosas, C., Markaida, U., López-Rocha, J., Díaz, F., Re, D., Caamal-Monsreal, C., Gallardo, P., Pascual, C., Galindo-Sánchez, C., Juárez, O., López-Galindo, L., Ventura-López, C. (2024). Octopus maya, the mayan octopus. Octopus Biology and Ecology, 95-117. DOI: https://doi.org/10.1016/B978-0-12-820639-3.00009-1. |
| 2024 | Santiago, I., Rosas, C., Cruz‐López, H., Domingues, P., Pascual, C., Mascaró, M., Sanchez‐Arteaga, A., Caamal, C., Gallardo, P. (2024). Growth, survival, digestive activity and respiratory metabolism of Octopus maya juveniles fed with prepared diets. Journal of Animal Physiology and Animal Nutrition, 108 (5), 1383-1392. DOI: https://doi.org/10.1111/jpn.13976. |
| 2023 | Ángeles-González, L., Re-Araujo, A., Díaz, F., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Galindo-Sánchez, C., Mascaró, M., Pascual, C., Rosas, C. (2023). Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. Journal of Thermal Biology, 114, 103495. DOI: https://doi.org/10.1016/j.jtherbio.2023.103495. |
| 2023 | Sánchez, M., Gallardo, P., Domingues, P., Rosas, C., Pascual, C., Ceballos-Vázquez, B. (2023). Changes in digestive enzymes and nutritional ontogeny reserves in newly hatched pacific pygmy octopus, Paroctopus digueti. Aquaculture, 576, 739873. DOI: https://doi.org/10.1016/j.aquaculture.2023.739873. |
| 2022 | Ventura-López, C., López-Galindo, L., Rosas, C., Sánchez-Castrejón, E., Galindo-Torres, P., Pascual, C., Rodríguez-Fuentes, G., Juárez, O., Galindo-Sánchez, C. (2022). Sex-specific role of the optic gland in Octopus maya: a transcriptomic analysis. General and Comparative Endocrinology, 320, 114000. DOI: https://doi.org/10.1016/j.ygcen.2022.114000. |
| 2022 | Flores-García, L., Camargo-Castellanos, J., Pascual-Jímenez, C., Almazán-Rueda, P., Monroy-López, J., Albertos-Alpuche, P., Martínez-Yáñez, R. (2022). Welfare indicators in tilapia: An epidemiological approach. Frontiers in Veterinary Science, 9, 882567. DOI: https://doi.org/10.3389/fvets.2022.882567. |
| 2022 | Pascual, C., Rodríguez-Canul, R., Huchin-Mian, J., Mascaró, M., Briones-Fourzán, P., Lozano-Álvarez, E., Sánchez-Arteaga, A., Escalante, K. (2022). Immune Response to natural and experimental infection of Panulirus argus virus 1 (PaV1) in juveniles of Caribbean spiny lobster. Animals, 12 (15), 1951. DOI: https://doi.org/10.3390/ani12151951. |
| 2020 | Roumbedakis, K., Alexandre, M., Puch, J., Martins, M., Pascual, C., Rosas, C. (2020). Short and long-term effects of anesthesia in Octopus maya (cephalopoda, octopodidae) juveniles. Frontiers in Physiology, 11, 697. DOI: https://doi.org/10.3389/fphys.2020.00697. |
| 2020 | Pascual, C., Cruz-Lopez, H., Mascaró, M., Gallardo, P., Sánchez, A., Domingues, P., Rosas, C. (2020). Changes in biochemical composition and energy reserves associated with sexual maturation of Octopus maya. Frontiers in physiology, 11, 22. DOI: https://doi.org/10.3389/fphys.2020.00022. |
| 2020 | Gallardo, P., Villegas, G., Rosas, C., Domingues, P., Pascual, C., Mascaró, M., Sánchez-Arteaga, A., Estefanell, J., Rodríguez, S. (2020). Effect of different proportions of crab and squid in semi-moist diets for Octopus maya juveniles. Aquaculture, 524, 735233. DOI: https://doi.org/10.1016/j.aquaculture.2020.735233. |
| 2020 | Pascual, C., Cruz-Lopez, H., Mascaró, M., Gallardo, P., Sánchez, A., Domingues, P., Rosas, C. (2020). Changes in biochemical composition and energy reserves associated with sexual maturation of Octopus maya. Frontiers in physiology, 11, 22. DOI: https://doi.org/10.3389/fphys.2020.00022. |
| 2020 | Zamora-Briseño, J., Ruiz-May, E., Elizalde-Contreras, J., Hernández-Velázquez, I., Hernández-Pérez, A., Fuentes-García, A., Herrera-Salvatierra, N., Brionez-Fourzán, P., Pascual-Jiménez, C., Lozano-Álvarez, E., Rodríguez-Canul, R. (2020). iTRAQ-Based proteomic profile analysis of the hepatopancreas of Caribbean spiny lobsters infected with Panulirus argus virus 1: Metabolic and physiological implications. Frontiers in Microbiology, 11, 1084. DOI: https://doi.org/10.3389/fmicb.2020.01084. |
Daisy Pineda Suazo

Mi línea de investigación se centra en la nutrición acuícola, fisiología digestiva y biotecnología aplicada a organismos marinos, con énfasis en Octopus maya, una especie de alta relevancia económica y ecológica. El objetivo principal de mi trabajo es optimizar la alimentación en acuicultura mediante el desarrollo de dietas formuladas basadas en un entendimiento profundo de los procesos digestivos, integrando herramientas de biología molecular, bioinformática y microbiología aplicada.
Mi metodología combina el modelado tridimensional de proteínas digestivas, ensayos de digestibilidad in vitro, análisis transcriptómico de tejidos digestivos y la caracterización del microbioma cultivable del sistema digestivo. Esta aproximación multidisciplinaria permite identificar enzimas clave tanto del pulpo como de su microbiota asociada, evaluar el potencial de ingredientes alternativos, y diseñar estrategias de predigestión enzimática para mejorar la eficiencia nutricional de las dietas.
Las aplicaciones de esta investigación son amplias: contribuye al desarrollo de dietas más eficientes y sostenibles, reduce la dependencia de ingredientes costosos como el cangrejo y el calamar, y promueve prácticas de acuicultura regenerativa que benefician tanto a la conservación de las poblaciones silvestres como al bienestar de las comunidades costeras. Además, la transferencia tecnológica basada en el aprovechamiento del microbioma digestivo abre nuevas oportunidades en la producción de bioaditivos, fortaleciendo la innovación en sistemas de producción acuícola.
| AÑO | AUTORES / PUBLICACIONES |
|---|---|
| 2025 | Pineda-Suazo, D., Guillén-Chable, F., Escobedo-Hinojosa, W. I., Galindo-Sánchez, C. E., Rosas, C. (2025). Insights into Octopus maya cathepsins from metatranscriptome and genome: structure evolutionary relationships and functional role prediction in digestive processes. Biology Open, 14(4), bio061778. DOI: https://doi.org/10.1242/bio.061778. |
| 2025 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Gallardo, P., Rosas, C. (2025). Chyme sampling from the digestive tract of Octopus maya. |
| 2025 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Gallardo, P., Rosas, C. (2025). Overview static in vitro simulation system of the digestive process in Octopus maya. |
| 2025 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Gallardo, P., Rosas, C. (2025). Development and validation of a static in vitro digestion system for Octopus maya. |
| 2025 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Gallardo, P., Rosas, C. (2025). Protocol for anesthesia and euthanasia in Octopus maya. |
| 2024 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Fabian-Canseco, L. E., Gallardo, P., Moguel-Ojeda, C., Caamal-Monsreal, C., Sánchez-Arteaga A., Rosas, C. (2024). Evaluation of Octopus maya enzyme activity of the digestive gland and gastric juice. Biology Open, 13(9), bio060429. DOI: https://doi.org/10.1242/bio.060429. |
| 2021 | Pineda-Suazo, D., Montero-Vargas, J. M., Ordaz-Ortiz, J. J., & Vázquez-Marrufo, G. (2021). Growth inhibition of phytopathogenic fungi and oomycetes by basidiomycete Irpex lacteus and Identification of its antimicrobial extracellular metabolites. Polish Journal of Microbiology, 70(1), 131. DOI: https://doi.org/10.33073/pjm-2021-014. |
Ángel Humberto Rojo

Mi interés académico está en estudiar las capacidades inmunológicas de los peces teleósteos de importancia acuícola durante su desarrollo temprano, así como conocer las reacciones a estímulos para potencializar su respuesta inmunológica. Mi objetivo principal es generar información para entender los mecanismos de inmunidad entrenada y resaltar la importancia de los peces teleósteos como modelo biológico único para estudios sobre el desarrollo del sistema inmune en vertebrados debido que a partir de su escalón evolutivo se presenta la respuesta adaptativa. Considero a los mecanismos de inmunidad entrenada como la mejor herramienta para comprender las respuestas a los tratamientos de inmunoestimulación y lograr una mejor estandarización de estos. Mi trabajo hasta la fecha se ha centrado en el estudio de la ventana de susceptibilidad inmunológica en el desarrollo temprano de los peces. He realizado la descripción del desarrollo ontogénico de los órganos del sistema inmunológico y la detección de la primera producción autóloga de inmunoglobulinas; principalmente enfocados en describir los momentos de la ventana de susceptibilidad inmunológica y oportunidad para el entrenamiento de la inmunidad del pargo lunarejo (Lutjanus guttatus). Un aspecto relevante en términos de entrenamiento de la inmunidad es la elección y forma de aplicación del agente inmunoestimulante, por lo cual he dedicado esfuerzos a la caracterización estructural de beta glucanos aislados de microalgas; y por ende la producción masiva de biomasa microalgal. Mi experiencia en la producción de alimento vivo para la alimentación larvaria de peces me permite proponer la bioencapsulación por rotíferos y artemias como una vía potencial para administrar agentes inmunoestimulantes a larvas, como son los beta glucanos, en términos de inmunidad entrenada. Mis líneas de investigación están relacionados con desarrollo tecnológicos sobre a) Reproducción y cultivo de peces, b) Larvas de peces marinos como modelo para estudiar la inmunidad entrenada y c) Alimento vivo y larvicultura de peces marinos tropicales. Espero que mi trabajo se utilice en la mejora de los protocolos de cultivos larvarios de peces y ayude a dar certeza en la producción de juveniles.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2023 | Morales-Plasencia, M., Ibarra-Castro, L., Martínez-Brown, J., Nieves-Soto, M., Bermúdez-Lizárraga, J., Rojo-Cebreros, A. (2023). The effect of nitrogen limitation on carbohydrates and β-glucan accumulation in nannochloropsis oculata. Algal Research, 72, 103125. DOI: https://doi.org/10.1016/j.algal.2023.103125. |
| 2023 | Martínez-Brown, J., Álvarez-González, F., Ibarra-Castro, L., Parra, M., Rodríguez-Ibarra, L., Rojo-Cebreros, A., Navarro-Flores, J. (2023). Benchmarking of early ontogeny parameters as predictors of the first-feeding larvae vitality in spotted rose snapper Lutjanus guttatus. Aquaculture Reports, 30, 101619. DOI: https://doi.org/10.1016/j.aqrep.2023.101619. |
2020 | Ibarra-Castro, L., Ochoa-Bojórquez, M., Sánchez-Téllez, J., Rojo-Cebreros, A., Alvarez-Lajonchère, L. (2020). A new efficient method for the mass production of juvenile spotted rose snapper Lutjanus guttatus. Aquaculture Reports, 18, 100550. DOI: https://doi.org/10.1016/j.aqrep.2020.100550. |
Carlos Rosas

Extensión 7220
Su formación académica la realizó en la UNAM, donde obtuvo su Licenciatura en 1983, Maestría en 1986 y Doctorado en 1989. En 1996, se unió como profesor de la Facultad de Ciencias de la UNAM. Fue el fundador y primer coordinador de la Unidad Multidisciplinaria de Docencia e Investigación de la Facultad de Ciencias de la UNAM en Sisal, Yucatán. Actualmente, ostenta el cargo de Profesor Titular C, coordina el Laboratorio de Ecofisiología Aplicada y es el Coordinador General de la Unidad Multidisciplinaria de Docencia e Investigación de la Facultad de Ciencias de la UNAM en Yucatán.
Ha desarrollado su carrera docente e investigadora en el ámbito de la Biología Marina Experimental, enfocándose en la ecofisiología aplicada a organismos de interés pesquero y acuícola. Ha impartido más de 50 cursos de licenciatura y posgrado, y ha formado a más de 80 estudiantes de estos niveles. Ha publicado 167 artículos en revistas indexadas y 18 capítulos de libros con distribución internacional.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2024 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Fabian-Canseco, L., Gallardo, P., Moguel-Ojeda, C., Caamal-Monsreal, C., Sánchez-Arteaga, A., Rosas, C. (2024). Evaluation of Octopus maya enzyme activity of the digestive gland and gastric juice. Biology Open, 13 (9). DOI: https://doi.org/10.1242/bio.060429. |
| 2024 | Meza-Buendia, A., Aparicio-Trejo, O., Díaz, F., Pedraza-Chaverri, J., Álvarez-Delgado, C., Rosas, C. (2024). Climate change consequences on the systemic heart of female octopus maya: oxidative phosphorylation assessment and the antioxidant system. Biology Open, 13 (5). DOI: https://doi.org/10.1242/bio.060103. |
| 2024 | Escamilla-Aké, Á., Ángeles-González, L., Kurczyn, A., Caamal-Monsreal, C., Rosas, C. (2024). How to quantify the regional effects of ocean temperature rise due to climate change: implications of Octopus maya ecophysiology on food security of the Yucatan. Regional Environmental Change, 24 (2), 81. DOI: https://doi.org/10.1007/s10113-024-02236-1. |
| 2024 | Vecchio, G., Rodríguez‐Fuentes, G., Rosas, C., Mascaró, M. (2024). Thermoregulatory response in juvenile Hippocampus erectus: effect of magnitude and rate of thermal increase on metabolism and antioxidative defence. Ecology and evolution, 14 (2), e10977. DOI: https://doi.org/10.1002/ece3.10977. |
| 2023 | Vergara-Ovalle, F., Ayala-Guerrero, F., Rosas, C., Sánchez-Castillo, H. (2023). Novel object recognition in Octopus maya. Animal Cognition, 26 (3), 1065-1072. DOI: https://doi.org/10.1007/s10071-023-01753-6. |
| 2023 | Domínguez-Castanedo, O., Palomino-Cruz, D., Mascaró, M., Rodríguez-Fuentes, G., Juarez, O., Galindo-Sanchez, C., Galindo-Torres, P., Díaz, F., Rosas, C. (2023). Trans-generational physiological condition of embryos is conditioned by maternal thermal stress in octopus maya. Marine Biology. DOI: https://doi.org/10.1007/s00227-023-04183-7. |
| 2023 | Ángeles-González, L., Re-Araujo, A., Díaz, F., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Galindo-Sánchez, C., Mascaró, M., Pascual, C., Rosas, C. (2023). Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. Journal of Thermal Biology, 114, 103495. DOI: https://doi.org/10.1016/j.jtherbio.2023.103495. |
| 2023 | Vargas-Abúndez, J., Plata-Díaz, A., Mascaró, M., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Jiménez-Be, A., Rosas, C. (2023). Maternal temperature stress modulates acclimation and thermal biology in Octopus maya (cephalopoda: octopodidae) juvenile progeny. Marine Biology, 170 (5), 56. DOI: https://doi.org/10.1007/s00227-023-04200-9. |
| 2023 | Sánchez, M., Gallardo, P., Domingues, P., Rosas, C., Pascual, C., Ceballos-Vázquez, B. (2023). Changes in digestive enzymes and nutritional ontogeny reserves in newly hatched pacific pygmy octopus, Paroctopus digueti. Aquaculture, 576, 739873. DOI: https://doi.org/10.1016/j.aquaculture.2023.739873. |
| 2023 | Aguilar, L., Moreno-Ortiz, G., Caamal-Monsreal, C., Rosas, C., Noreña-Barroso, E., Gómez-Maldonado, M., Rodríguez-Fuentes, G. (2023). Effects of phenanthrene exposure on the b-esterases activities of octopus maya (voss and solís ramírez, 1996) embryos. Bulletin of Environmental Contamination and Toxicology, 110 (3), 63. DOI: https://doi.org/10.1007/s00128-023-03706-8. |
| 2023 | Garcia-Rueda, A., Mascaró, M., Rodriguez-Fuentes, G., Caamal-Monsreal, C., Díaz, F., Paschke, K., Rosas, C. (2023). Moderate hypoxia mitigates the physiological effects of high temperature on the tropical blue crab Callinectes sapidus. Frontiers in Physiology, 13, 1089164. DOI: https://doi.org/10.3389/fphys.2022.1089164. |
| 2023 | Moreno-Ortiz, G., Aguilar, L., Caamal-Monsreal, C., Noreña-Barroso, E., Rosas, C., Rodríguez-Fuentes, G. (2023). Benzophenone-3 does not cause oxidative stress or b-esterase inhibition during embryo development of Octopus maya (Voss and Solís Ramírez, 1966). Bulletin of Environmental Contamination and Toxicology, 111 (5), 60. DOI: https://doi.org/10.1007/s00128-023-03788-4. |
| 2023 | Escamilla-Ake, C., Caamal-Monsreal, A., C., Angeles-González, L.E., Rosas, C. (2023). A general model fitting coleoid cephalopod growth as a function of time and temperature to a single curve. Aquaculture, Fish and Fisheries, 3, 539 - 549. DOI: https://doi.org/10.1002/aff2.133. |
| 2022 | Ventura-López, C., López-Galindo, L., Rosas, C., Sánchez-Castrejón, E., Galindo-Torres, P., Pascual, C., Rodríguez-Fuentes, G., Juárez, O., Galindo-Sánchez, C. (2022). Sex-specific role of the optic gland in Octopus maya: a transcriptomic analysis. General and Comparative Endocrinology, 320, 114000. DOI: https://doi.org/10.1016/j.ygcen.2022.114000. |
| 2022 | Juárez, O., Arreola-Meraz, L., Sánchez-Castrejón, E., Avila-Poveda, O., López-Galindo, L., Rosas, C., Galindo-Sánchez, C. (2022). Oviducal gland transcriptomics of Octopus maya through physiological stages and the negative effects of temperature on fertilization. PeerJ, 10, e12895. DOI: https://doi.org/10.7717/peerj.12895. |
| 2022 | Andrews, C., Ponte, G., Rosas, C. (2022). Methodological considerations in studying digestive system physiology in octopus: limitations, lacunae and lessons learnt. Frontiers in Physiology, 13 (928013), DOI: https://doi.org/10.3389/fphys.2022.928013. |
| 2022 | Vecchio, G., Galindo-Sánchez, C., Tripp-Valdez, M., López-Landavery, E., Rosas, C., Mascaró, M. (2022). Transcriptomic response in thermally challenged seahorses Hippocampus erectus: the effect of magnitude and rate of temperature change. Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular. DOI: https://doi.org/10.1016/j.cbpb.2022.110771. |
| 2022 | Domínguez-Estrada, A., Galindo-Sánchez, C., Ventura-López, C., Rosas, C., Juárez, O. (2022). Response of optic gland pathways to thermal stress in the reproductive phase of female Octopus maya. Journal of Molluscan Studies, 88 (3). DOI: https://doi.org/10.1093/mollus/eyac018. |
| 2022 | Braga, R., Molen, S., Rodriguez, Y., Fernández-Giménez, A., Battini, N., Rosas, C., Ortiz, N. (2022). Morphophysiological responses of Octopus tehuelchus juveniles during the transition period between endogenous and exogenous feeding. Aquaculture, 556, 738269. DOI: https://doi.org/10.1016/j.aquaculture.2022.738269. |
| 2022 | Meza-Buendia, A., Aparicio-Trejo, O., Díaz, F., Caamal-Monsreal, C., Pedraza-Chaverri, J., Álvarez-Delgado, C., Paschke, K., Rosas, C. (2022). High resolution respirometry of isolated mitochondria from adult Octopus maya (class: cephalopoda) systemic heart. PloS one, 17 (8), e0273554. DOI: https://doi.org/10.1371/journal.pone.0273554. |
| 2022 | Ortiz, M., Grunauer, M., Gutierrez, E., Izurieta, R., Macis, M., Phan, P., Rosas, C., Teran, E. (2022). Financial incentives, not behavioral nudges, led to optimized HIV testing among pregnant women in a high-burden urban population in Ecuador. The American Journal of Tropical Medicine and Hygiene, 106 (6), 1703 - 1710. DOI: https://doi.org/10.4269/ajtmh.21-0591. |
| 2022 | Chávez-Solís, E., Díaz, F., Paschke, K., Re, D., Rosas, C., Rodríguez-Fuentes, G., Tremblay, N., Mascaró, M. (2022). Physiological characterization of Typhlatya cave shrimps: linking habitat with aerobic metabolism. Frontiers in Marine Science, 9, 892274. DOI: https://doi.org/10.3389/fmars.2022.892274. |
| 2022 | Tremblay, N., García‐Guerrero, M., Díaz, F., Caamal‐Monsreal, C., Rodríguez‐Fuentes, G., Paschke, K., Gebauer, P., Rosas, C. (2022). Long‐term mild hypoxia does not reduce thermal tolerance or performance of the freshwater prawn Macrobrachium tenellum. Aquaculture Research, 53 (1), 63-74. DOI: https://doi.org/10.1111/are.15553 |
| 2021 | Ángeles-González, L., Martínez-Meyer, E., Yañez-Arenas, C., Velázquez-Abunader, I., López-Rocha, J., Torrejón-Magallanes, J., Rosas, C. (2021). Climate change effect on Octopus maya (Voss and Solís-Ramírez, 1966) suitability and distribution in the Yucatan Peninsula, Gulf of Mexico: a correlative and mechanistic approach. Estuarine, Coastal and Shelf Science, 260, 107502. DOI: https://doi.org/10.1016/j.ecss.2021.107502. |
| 2021 | Meza-Buendia, A.K., Trejo-Escamilla, I., Piu, M., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Díaz, F., Re, D., Galindo-Sánchez, C.E., Rosas, C. (2021). Why high temperatures limit reproduction in cephalopods? The case of Octopus maya. Aquaculture Research, 53, 1- 16. DOI: https://doi.org/10.1111/are.15387. |
| 2021 | Villanueva, R., Coll-Lladó, M., Bonnaud-Ponticelli, L., Carrasco, S., Escolar, O., Fernández-Álvarez, F., Gleadall, I., Nabhitabhata, J., Ortiz, N., Rosas, C., Sánchez, P., Voight, J., Swoger, J. (2021). Born with bristles: new insights on the kölliker’s organs of octopus skin. Frontiers in Marine Science, 8, 645738. DOI: https://doi.org/10.3389/fmars.2021.645738. |
| 2021 | Ángeles-González, L., Martínez-Meyer, E., Rosas, C., Guarneros-Narváez, P., López-Rocha, J., Escamilla-Aké, Á., Osorio-Olvera, L., Yáñez-Arenas, C. (2021). Long-term environmental data explain better the abundance of the red octopus (Octopus maya) when testing the niche centroid hypothesis. Journal of Experimental Marine Biology and Ecology, 544, 151609. DOI: https://doi.org/10.1016/j.jembe.2021.151609. |
| 2021 | García-Rueda, A., Tremblay, N., Mascaró, M., Díaz, F., Paschke, K., Caamal-Monsreal, C., Rosas, C. (2021). The thermal tolerance of a tropical population of blue crab (Callinectes sapidus) modulates aerobic metabolism during hypoxia. Journal of Thermal Biology, 102, 103078. DOI: https://doi.org/10.1016/j.jtherbio.2021.103078. |
| 2021 | Larios-Soriano, E., Re-Araujo, A., Díaz, F., López-Galindo, L., Rosas, C., Ibarra-Castro, L. (2021). Effects of recent thermal history on thermal behaviour, thermal tolerance and oxygen uptake of yellowtail kingfish (Seriola lalandi) juveniles. Journal of Thermal Biology, 99, 103023. DOI: https://doi.org/10.1016/j.jtherbio.2021.103023. |
| 2021 | Bastos, P., Gallardo, P., Rosas, C., Vieira, F., Silva, C., Oliveira, G., Brignol, F., Guzella, L., Mattioni, B., Fracalossi, D. (2021). Pelleted diet with thermal treatment of ingredients for Octopus americanus: growth performance and enzymatic activity. Aquaculture Research, 52 (3), 1106-1117. DOI: https://doi.org/10.1111/are.14968. |
| 2020 | Bastos, P., Fracalossi, D., Chimal, M., Sánchez, A., Rosas, C. (2020). Digestive enzymes and timing of digestion in Octopus vulgaris type ii. Aquaculture Reports, 16, 100262. DOI: https://doi.org/10.1016/j.aqrep.2019.100262. |
| 2020 | Ángeles-González, L., Lima, F., Caamal-Monsreal, C., Díaz, F., Rosas, C. (2020). Exploring the effects of warming seas by using the optimal and pejus temperatures of the embryo of three octopoda species in the gulf of mexico. Journal of Thermal Biology, 94, 102753. DOI: https://doi.org/10.1016/j.jtherbio.2020.102753. |
| 2020 | Gallardo, P., Villegas, G., Rosas, C., Domingues, P., Pascual, C., Mascaró, M., Sánchez-Arteaga, A., Estefanell, J., Rodríguez, S. (2020). Effect of different proportions of crab and squid in semi-moist diets for Octopus maya juveniles. Aquaculture, 524, 735233. DOI: https://doi.org/10.1016/j.aquaculture.2020.735233. |
| 2020 | Pascual, C., Cruz-Lopez, H., Mascaró, M., Gallardo, P., Sánchez, A., Domingues, P., Rosas, C. (2020). Changes in biochemical composition and energy reserves associated with sexual maturation of Octopus maya. Frontiers in physiology, 11, 22. DOI: https://doi.org/10.3389/fphys.2020.00022. |
| 2020 | Ángeles-González, L., Martinez-Meyer, E., Yañez-Arenas, C., Velazquez-Abunader, I., Garcia-Rueda, A., Díaz, F., Tremblay, N., Flores-Rivero, M., Gebauer, P., Rosas, C. (2020). Using realized thermal niche to validate thermal preferences from laboratory studies. how do they stand?. Ecological Indicators, 118, 106741. DOI: https://doi.org/10.1016/j.ecolind.2020.106741. |
| 2020 | Roumbedakis, K., Alexandre, M., Puch, J., Martins, M., Pascual, C., Rosas, C. (2020). Short and long-term effects of anesthesia in Octopus maya (cephalopoda, octopodidae) juveniles. Frontiers in Physiology, 11, 697. DOI: https://doi.org/10.3389/fphys.2020.00697. |
| 2020 | Tremblay, N., Guerra-Castro, E., Díaz, F., Rodríguez-Fuentes, G., Simões, N., Robertson, D., Rosas, C. (2020). Cold temperature tolerance of the alien indo-pacific damselfish Neopomacentrus cyanomos from the Southern Gulf of Mexico. Journal of Experimental Marine Biology and Ecology, 524, 151308. DOI: https://doi.org/10.1016/j.jembe.2019.151308. |
| 2020 | Domingues, P., Rosas, C., Sánchez, A., Chimal, M., Gallardo, P. (2020). Effect of the processing of four marine species on their in vitro digestibility of Octopus vulgaris adults. Aquaculture International, 28 (3), 1269-1277. DOI: https://doi.org/10.1007/s10499-020-00524-1. |
| 2020 | Ponce-Márquez, M., Gamboa-Álvarez, M., Rosa-Castillo, J., López-Rocha, J., Rosas, C. (2020). Expansion of the geographical distribution of the Caribbean reef octopus (Octopus briareus) to the Gulf of Mexico. Ciencias marinas, 46 (3), 177-184. DOI: https://doi.org/10.7773/cm.v46i3.3133. |
| 2021 | |
| 2021 | |
| 2021 | |
| 2020 | |
| 2020 | |
| 2020 | |
| 2020 | |
| 2020 | |
| 2020 | |
| 2020 | |
| 2020 | |
| 2020 | |
| 2020 |
Ariadna Sánchez Arteaga

Técnica Académica Titular C en la Unidad Multidisciplinaria de Docencia e Investigación de Sisal.
Estado nutricional y de salud de organismos acuáticos de interés comercial. Como técnico académico, apoyo las labores de investigación de los profesores cuya labor incide en esta temática. La evaluación del estado nutricional y de salud se lleva a cabo a través de indicadores bioquímicos e inmunológicos en sangre y en otros tejidos de los organismos como glándula digestiva/hígado, músculo, corazón. Las técnicas se han enfocado principalmente en organismos acuáticos de interés comercial como camarón, langosta, robalo, caballiot de mar, pámpano, pulpo. En varias especies se tienen evaluaciones de poblaciones del medio natural y en diferentes condiciones experimentales (ambiental, dietas, etc)
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2024 | Santiago, I., Rosas, C., Cruz‐López, H., Domingues, P., Pascual, C., Mascaró, M., Sanchez‐Arteaga, A., Caamal, C., Gallardo, P. (2024). Growth, survival, digestive activity and respiratory metabolism of Octopus maya juveniles fed with prepared diets. Journal of Animal Physiology and Animal Nutrition, 108 (5), 1383-1392. DOI: https://doi.org/10.1111/jpn.13976. |
| 2024 | Pineda-Suazo, D., Escobedo-Hinojosa, W., Fabian-Canseco, L., Gallardo, P., Moguel-Ojeda, C., Caamal-Monsreal, C., Sánchez-Arteaga, A., Rosas, C. (2024). Evaluation of Octopus maya enzyme activity of the digestive gland and gastric juice. Biology Open, 13 (9). DOI: https://doi.org/10.1242/bio.060429. |
| 2022 | Pascual, C., Rodríguez-Canul, R., Huchin-Mian, J., Mascaró, M., Briones-Fourzán, P., Lozano-Álvarez, E., Sánchez-Arteaga, A., Escalante, K. (2022). Immune response to natural and experimental infection of Panulirus argus virus 1 (pav1) in juveniles of caribbean spiny lobster. Animals, 12 (15), 1951. DOI: https://doi.org/10.3390/ani12151951. |
Jaime Suárez Bautista

Técnico Académico Titular B, Unidad Multidisciplinaria de Docencia e Investigación de SISAL.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2024 | Barreto, A., Arenas, M., Álvarez‐González, A., Suárez‐Bautista, J., Sánchez, A., Maldonado, C., Cuzon, G., Gaxiola, G. (2024). Evaluation of in vitro and in vivo digestibility of potential feed ingredients for juvenile Yellowtail Snapper. North American Journal of Aquaculture, 86(2), 179-192. DOI: https://doi.org/10.1002/naaq.10316. |
| 2021 | Arenas, M., Álvarez-González, A., Barreto, A., Sánchez, A., Suárez-Bautista, J., Escalante, K., Gaxiola, G. (2021). Effect of dietary carbohydrates on growth performance, feed efficiency and glucose metabolism in common snook (Centropomus undecimalis) and yellowtail snapper (Ocyurus chrysurus) juveniles. Aquaculture, 543, 736958. DOI: https://doi.org/10.1016/j.aquaculture.2021.736958. |
| 2021 | Arenas, M., Álvarez‐González, C., Barreto, A., Sánchez‐Zamora, A., Suárez‐Bautista, J., Cuzon, G., Gaxiola, G. (2021). Physiological and metabolic protein‐sparing effects of dietary lipids on common snook Centropomus undecimalis (Bloch, 1792) juveniles. Aquaculture Nutrition, 27(4), 1089-1102. DOI: https://doi.org/10.1111/anu.13250. |
Luis Enrique Ángeles-González

Soy investigador posdoctoral en el Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), en el Departamento de Biotecnología Marina. Mi formación es en biología marina, y me especializo en entender cómo el cambio climático afecta a los ecosistemas marinos y a las especies que los habitan. Trabajo combinando modelos de nicho ecológico y datos fisiológicos para predecir cambios en la distribución y abundancia de especies marinas, incluyendo aquellas de importancia pesquera. También estudio especies invasoras, evaluando su riesgo de expansión y los posibles impactos que podrían tener en nuevos ambientes. El objetivo principal de mi trabajo es generar conocimiento útil que permita anticipar los efectos del cambio climático sobre los recursos marinos y diseñar estrategias que reduzcan los riesgos ecológicos, económicos y sociales asociados.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2025 | Re-Araujo, A., Díaz, F., Sánchez-Ovando, J., Lafarga-de la Cruz, F., Alvarez-Lee, L., Ángeles-González, L. (2025). Thermal Biology and Metabolic Scope of Two Species of Juvenile Gastropod Mollusks Inhabiting Kelp Forests. Zoological Studies, 64(6). DOI |
| 2025 | Ángeles-González, L, Alvarez‐Lee, L., Osorio‐Olvera, L., López‐Ripoll, E., Díaz, F., Rosas, C., Cruz-López, H., Pascual, C. (2025). Linking inferred laboratory‐derived temperature stress to the immunocompetence of wild Octopus maya (Mayan octopus) GL Voss & Solís, 1966. Ecology and Evolution, 15(3), e70805. DOI |
| 2024 | Ángeles-González, L., Torrejón-Magallanes, J., Escamilla-Aké, A., Osorio-Olvera, L., Avendaño, O., Díaz, F., Rosas, C. (2024). Can upwelling regions be potential thermal refugia for marine fishes during climate warming? Journal of Thermal Biology, 123, 103893. DOI |
| 2024 | Garcia-Cardenas, E., Ángeles-González, L., Alcaraz, G. (2024). Hermit crabs of the genera calcinus and clibanarius show no evidence of competitive exclusion at a geographic scale. Hydrobiologia, 851 (14), 3355-3367. DOI |
| 2024 | Escamilla-Aké, Á., Ángeles-González, L., Kurczyn, A., Caamal-Monsreal, C., Rosas, C. (2024). How to quantify the regional effects of ocean temperature rise due to climate change: implications of Octopus maya ecophysiology on food security of the Yucatan. Regional Environmental Change, 24 (2), 81. DOI |
| 2024 | Coelho, J., Ángeles-González, L., Cahuich-López, M., Mariño-Tapia, I., Lima, S. (2024). Larval dispersal and climate models provide insights into present and future distribution of a tropical sardine. Marine Biology Research, 20 (1-2), 1-14. DOI |
| 2024 | Moreno-Mendoza, R., Courville, E., Ángeles-González, L., Duarte, J., Carulla, M., Malfanti-Bravo, D., Mena-Auladell, A., Saucède, T., Simões, N., Poulin, E. (2024). A new morphotype description of Arbacia spatuligera Valenciennes, 1846 (Arbacioida, Echinoidea) and bathymetric range extension from mesophotic reefs of the central coast of Chile. Journal of the Marine Biological Association of the United Kingdom, 104, e48. DOI |
| 2023 | Loya-Cancino, K., Ángeles-González, L., Yañez-Arenas, C., Ibarra-Cerdeña, C., Velázquez-Abunader, I., Aguilar-Perera, A., Vidal-Martínez, V. (2023). Predictions of current and potential global invasion risk in populations of lionfish (Pterois volitans and Pterois miles) under climate change scenarios. Marine Biology, 170 (3), 27. |
| 2023 | Ángeles-González, L., Re-Araujo, A., Díaz, F., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Galindo-Sánchez, C., Mascaró, M., Pascual, C., Rosas, C. (2023). Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. Journal of Thermal Biology, 114, 103495. DOI |
| 2023 | Lima, F., Ángeles-González, L., Maia, H., Leite, T., Cahuich-López, M , Mariño-Tapia, I., Santana-Cisneros, M., Ardisson, P., Lima, S. (2023). Molecular data, ecological niche, and dispersal models reveal a trans-atlantic shallow-water octopus species. Progress in Oceanography, 213, 103019. DOI |
| 2023 | Escamilla‐Aké, Á., Ángeles-González, L., Caamal‐Monsreal, C., Rosas, C. (2023). A general model fitting coleoid cephalopod growth as a function of time and temperature to a single curve. Aquaculture, Fish and Fisheries, 3 (6), 539-549. DOI |
| 2021 | Ángeles-González, L., Martínez-Meyer, E., Yañez-Arenas, C., Velázquez-Abunader, I., López-Rocha, J., Torrejón-Magallanes, J., Rosas, C. (2021). Climate change effect on Octopus maya (Voss and Solís-Ramírez, 1966) suitability and distribution in the Yucatan Peninsula, Gulf of Mexico: a correlative and mechanistic approach. Estuarine, Coastal and Shelf Science, 260, 107502. DOI |
| 2021 | Torrejón-Magallanes, J., Ángeles-González, L., Csirke, J., Bouchon, M., Morales-Bojórquez, E., Arreguín-Sánchez, F. (2021). Modeling the pacific chub mackerel (Scomber japonicus) ecological niche and future scenarios in the northern Peruvian Current System. Progress in Oceanography, 197, 102672. DOI |
| 2021 | Ángeles-González, L., Martínez-Meyer, E., Rosas, C., Guarneros-Narváez, P., López-Rocha, J., Escamilla-Aké, Á., Osorio-Olvera, L., Yáñez-Arenas, C. (2021). Long-term environmental data explain better the abundance of the red octopus (Octopus maya) when testing the niche centroid hypothesis. Journal of Experimental Marine Biology and Ecology, 544, 151609. DOI |
| 2021 | Santana‐Cisneros, M., Ardisson, P., González, Á., Mariño‐Tapia, I., Cahuich‐López, M., Ángeles‐González, L., Ordoñez‐López, U., Velázquez‐Abunader, I. (2021). Dispersal modeling of octopoda paralarvae in the Gulf of Mexico. Fisheries Oceanography, 30 (6), 726-739. DOI |
| 2021 | Ángeles-González, L., Solana-Arellano, E., Díaz-Castañeda, V., Flores-Uzeta, O., Necoechea-Zamora, M. (2021). Soft-bottom macrofauna along the coast of Bahía de Los Ángeles, Gulf of California, during the summer and winter. Ciencias marinas, 47 (1), 49-59. DOI |
| 2020 | Lima, F., Ángeles-González, L., Leite, T., Lima, S. (2020). Global climate changes over time shape the environmental niche distribution of Octopus insularis in the Atlantic Ocean. Marine Ecology Progress Series, 652, 111-121. DOI |
| 2020 | Ángeles-González, L., Lima, F., Caamal-Monsreal, C., Díaz, F., Rosas, C. (2020). Exploring the effects of warming seas by using the optimal and pejus temperatures of the embryo of three octopoda species in the Gulf of Mexico. Journal of Thermal Biology, 94, 102753. DOI |
| 2020 | Ángeles-González, L., Martinez-Meyer, E., Yañez-Arenas, C., Velazquez-Abunader, I., Garcia-Rueda, A., Díaz, F., Tremblay, N., Flores-Rivero, M., Gebauer, P., Rosas, C. (2020). Using realized thermal niche to validate thermal preferences from laboratory studies. How do they stand? Ecological Indicators, 118, 106741. DOI |
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2025 | Re-Araujo, A., Díaz, F., Sánchez-Ovando, J., Lafarga-de la Cruz, F., Alvarez-Lee, L., Ángeles-González, L. (2025). Thermal Biology and Metabolic Scope of Two Species of Juvenile Gastropod Mollusks Inhabiting Kelp Forests. Zoological Studies, 64(6). DOI: https://doi.org/10.6620/ZS.2025.64-06. |
| 2025 | Oyervides-Figueroa, J., Re-Araujo, A., Díaz, F., Norzagaray-López, C., Díaz-Castañeda, V., Tripp-Valdez, M., Galindo-Sánchez, C., Lafarga-De la Cruz, F. (2025). Improved growth performance and physiological state in hybrid abalone (Haliotis rufescens and Haliotis fulgens) facing ocean acidification conditions. Aquaculture, 596, 741791. DOI: https://doi.org/10.1016/j.aquaculture.2024.741791. |
| 2024 | Chávez-Solís, E., Mascaró, M., Rosas, C., Rodríguez-Fuentes, G., Caamal-Monsreal, C., Paschke, K., Díaz, F., Re-Araujo, A. (2024). Are haloclines distributional barriers in anchialine ecosystems? Physiological response of cave shrimps to salinity. Plos one, 19(7), e0305909. DOI: https://doi.org/10.1371/journal.pone.0305909. |
| 2024 | Sánchez-Ovando, J. P., Re-Araujo, A., Díaz, F., Iñiguez, E., Norzagaray-López, C. O., Vinn, O. (2024). Microstructure and mineralogy of the tube and operculum of serpulid polychaetes from temperate and warm waters. Zoomorphology, 143(1), 31-46. DOI: https://doi.org/10.1007/s00435-023-00637-0. |
| 2024 | Giffard-Mena, I., Ponce-Rivas, E., Sigala-Andrade, H., Uranga-Solís, C., Re-Araujo, A., Díaz, F., Camacho-Jiménez, L. (2024). Evaluation of the osmoregulatory capacity and three stress biomarkers in white shrimp Penaeus vannamei exposed to different temperature and salinity conditions: NA+/K+ ATPase, Heat Shock Proteins (HSP), and Crustacean Hyperglycemic Hormones (CHHs). Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular. DOI: https://doi.org/10.1016/j.cbpb.2024.110942. |
| 2024 | Rosas, C., Markaida, U., López-Rocha, J., Díaz, F., Re-Araujo, D., Caamal-Monsreal, C., Gallardo, P., Pascual, C., Galindo-Sánchez, C., Juárez, O., López-Galindo, L., Ventura-López, C. (2024). Octopus maya, the mayan octopus. Octopus Biology and Ecology, 95-117. DOI: https://doi.org/10.1016/B978-0-12-820639-3.00009-1. |
| 2023 | Ángeles-González, L., Re-Araujo, A., Díaz, F., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Galindo-Sánchez, C., Mascaró, M., Pascual, C., Rosas, C. (2023). Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. Journal of Thermal Biology, 114, 103495. DOI: https://doi.org/10.1016/j.jtherbio.2023.103495. |
| 2023 | Lee, L., Re-Araujo, A., Díaz, F., Ovando, J., Carrasco, L. (2023). Thermal biology and plasticity of the thermal metabolic scope of angel fish Pterophyllum scalare acclimated to different temperatures. International Aquatic Research, 15 (3), 263-269. DOI: https://doi.org/10.22034/iar.2023.1985934.1441. |
| 2023 | Larios-Soriano, E., Díaz, F., Re-Araujo, A., López, L., López-Galindo, L., True, C., Álvarez, C., Galaviz, M. (2023). Influence of temperature on respiratory metabolism during early development of Totoaba macdonaldi. Latin american journal of aquatic research, 51 (1), 109-116. DOI: https://doi.org/10.3856/vol51-issue1-fulltext-2952. |
| 2022 | López-Landavery, E., Amador-Cano, G., Tripp-Valdez, M., Ramírez-Álvarez, N., Cicala, F., Gómez-Reyes, R., Díaz, F., Re-Araujo, A., Galindo-Sánchez, C. (2022). Hydrocarbon exposure effect on energetic metabolism and immune response in Crassostrea virginica. Marine Pollution Bulletin, 180, 113738. DOI: https://doi.org/10.1016/j.marpolbul.2022.113738. |
| 2022 | Chávez-Solís, E., Díaz, F., Paschke, K., Re-Araujo, D., Rosas, C., Rodríguez-Fuentes, G., Tremblay, N., Mascaró, M. (2022). Physiological characterization of Typhlatya cave shrimps: linking habitat with aerobic metabolism. Frontiers in Marine Science, 9, 892274. DOI: https://doi.org/10.3389/fmars.2022.892274. |
| 2021 | Meza‐Buendía, A., Trejo‐Escamilla, I., Piu, M., Caamal‐Monsreal, C., Rodríguez‐Fuentes, G., Díaz, F., Re-Araujo, A., Galindo‐Sánchez, C., Rosas, C. (2021). Why high temperatures limit reproduction in cephalopods? The case of Octopus maya. Aquaculture Research, 52 (11), 5111-5123. DOI: https://doi.org/10.1111/are.15387. |
| 2021 | Larios-Soriano, E., Re-Araujo, A., Díaz, F., López-Galindo, L., Rosas, C., Ibarra-Castro, L. (2021). Effects of recent thermal history on thermal behaviour, thermal tolerance and oxygen uptake of yellowtail kingfish (Seriola lalandi) juveniles. Journal of Thermal Biology, 99, 103023. DOI: https://doi.org/10.1016/j.jtherbio.2021.103023. |
| 2021 | Díaz, F., Re-Araujo, A., Carpizo-Ituarte, E., Garcia-Esquivel, Z., Larios-Soriano, E., Perez-Carrasco, L., Lerma, E. (2021). Thermal physiological performance and thermal metabolic scope of the whelk Kelletia kelletii (forbes, 1850)(Gastropoda: Neptuneidae) acclimated to different temperatures. Zoological Studies, 60, e44. DOI: https://doi.org/10.6620/ZS.2021.60-44. |
| 2021 | Larios‐Soriano, E., Re‐Araujo, A., Gómez‐Gil, B., Ramirez, D., Trejo‐Escamilla, I., Galaviz, M. (2021). Reciprocal effect of temperature and dietary lipids on metabolic performance and gut microbiota of yellowtail kingfish (Seriola lalandi) juveniles. Aquaculture Research, 52 (12), 6189-6204. DOI: https://doi.org/10.1111/are.15480. |
| 2020 | Larios‐Soriano, E., Re‐Araujo, A., Díaz, F., Sánchez, C., López‐Galindo, L., Castro, L., Ramírez, D. (2020). Effect of acclimation temperature on thermoregulatory behaviour, thermal tolerance and respiratory metabolism of Lutjanus guttatus and the response of heat shock protein 70 (Hsp70) and lactate dehydrogenase (Ldh-a) genes. Aquaculture Research, 51 (3), 1089-1100. DOI: https://doi.org/10.1111/are.14455. |
Fernando Díaz

Extensión 27160
El profesor Fernando Díaz dirige el Grupo de Ecofisiología Organismos Acuáticos dentro del Departamento de Biotecnología Marina (CICESE). Es licenciado en Biología por la Universidad Nacional Autónoma de México, tiene una Maestría y un Doctorado en Ecofisiología de Organismos Acuáticos por la Universidad Nacional Autónoma de México. El profesor Díaz es un investigador interdisciplinario con amplios intereses en Biotecnología Marina, Acuicultura y Genómica Funcional de organismos acuáticos. Su investigación se centra en comprender las complejas interacciones entre los organismos y sus entornos, en condiciones controladas. Su grupo de investigación es pionero en la investigación en Ecofisiología y acuicultura utilizando enfoques innovadores. Cabe destacar que el profesor Díaz ha producido numerosas publicaciones sobre Ecofisiología, acuicultura, genómica funcional, especialmente sobre moluscos, crustáceos y peces. También tiene un fuerte enfoque en nuevas especies emergentes como el abulón, los bivalvos y la almeja generosa, visualizando el efecto sinérgico del cambio climático y la acidificación de los océanos sobre diversas respuestas fisiológicas.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2025 | Re-Araujo, A., Díaz, F., Sánchez-Ovando, J., Lafarga-de la Cruz, F., Alvarez-Lee, L., Ángeles-González, L. (2025). Thermal Biology and Metabolic Scope of Two Species of Juvenile Gastropod Mollusks Inhabiting Kelp Forests. Zoological Studies, 64(6). DOI: https://doi.org/10.6620/ZS.2025.64-06. |
| 2025 | Oyervides-Figueroa, J., Re-Araujo, A., Díaz, F., Norzagaray-López, C., Díaz-Castañeda, V., Tripp-Valdez, M., Galindo-Sánchez, C., Lafarga-De la Cruz, F. (2025). Improved growth performance and physiological state in hybrid abalone (Haliotis rufescens and Haliotis fulgens) facing ocean acidification conditions. Aquaculture, 596, 741791. DOI: https://doi.org/10.1016/j.aquaculture.2024.741791. |
| 2024 | Sánchez-Ovando, J. P., Re-Araujo, A., Díaz, F., Iñiguez, E., Norzagaray-López, C. O., Vinn, O. (2024). Microstructure and mineralogy of the tube and operculum of serpulid polychaetes from temperate and warm waters. Zoomorphology, 143(1), 31-46. DOI: https://doi.org/10.1007/s00435-023-00637-0. |
| 2024 | Chávez-Solís, E., Mascaró, M., Rosas, C., Rodríguez-Fuentes, G., Caamal-Monsreal, C., Paschke, K., Díaz, F., Re-Araujo, A. (2024). Are haloclines distributional barriers in anchialine ecosystems? Physiological response of cave shrimps to salinity. Plos one, 19(7), e0305909. DOI: https://doi.org/10.1371/journal.pone.0305909. |
| 2024 | Ramos‑Rodríguez, F., Ortega‑Ramírez, K., Méndez‑Can, L., Galindo‑Sánchez, C., Galindo‑Torres, P., Ventura‑López, C., Mascaró, M., Caamal‑Monsreal, C., Rodríguez, G., Díaz, F., Rosas, C. (2024). The hard life of an octopus embryo is seen through gene expression, energy metabolism, and its ability to neutralize radical oxygen species. Scientific Reports, 14 (16510). DOI: https://doi.org/10.1038/s41598-024-67335-9. |
| 2024 | Ángeles-González, L., Torrejón-Magallanes, J., Escamilla-Aké, A., Osorio-Olvera, L., Avendaño, O., Díaz, F., Rosas, C. (2024). Can upwelling regions be potential thermal refugia for marine fishes during climate warming?. Journal of Thermal Biology, 123, 103893. DOI: https://doi.org/10.1016/j.jtherbio.2024.103893. |
| 2024 | Meza-Buendia, A., Aparicio-Trejo, O., Díaz, F., Pedraza-Chaverri, J., Álvarez-Delgado, C., Rosas, C. (2024). Climate change consequences on the systemic heart of female Octopus maya: oxidative phosphorylation assessment and the antioxidant system. Biology Open, 13 (5). DOI: https://doi.org/10.1242/bio.060103. |
| 2024 | Zepeda, E., Garcia-Esquivel, Z., González-Gómez, M. A., Díaz, F., & Castellanos-Martinez, S. (2024). Clearance rates of sand-burrowed and laterally pressed unburrowed Pismo clam Tivela stultorum (Mawe 1823) in a laboratory open-flow system. Biology Open, 13(4). DOI: https://doi.org/10.1242/bio.060268. |
| 2024 | Sánchez-Ovando, J. P., Re, D., Díaz, F., Iñiguez, E., Norzagaray-López, C. O., & Vinn, O. (2024). Microstructure and mineralogy of the tube and operculum of serpulid polychaetes from temperate and warm waters. Zoomorphology, 143(1), 31-46. DOI: https://doi.org/10.1007/s00435-023-00637-0. |
| 2024 | Giffard-Mena, I., Ponce-Rivas, E., Sigala-Andrade, H., Uranga-Solís, C., Re-Araujo, A., Díaz, F., Camacho-Jiménez, L. (2024). Evaluation of the osmoregulatory capacity and three stress biomarkers in white shrimp Penaeus vannamei exposed to different temperature and salinity conditions: NA+/K+ ATPase, Heat Shock Proteins (HSP), and Crustacean Hyperglycemic Hormones (CHHs). Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular. DOI: https://doi.org/10.1016/j.cbpb.2024.110942. |
| 2023 | Garcia-Rueda, A., Mascaró, M., Rodriguez-Fuentes, G., Caamal-Monsreal, C., Díaz, F., Paschke, K., Rosas, C. (2023). Moderate hypoxia mitigates the physiological effects of high temperature on the tropical blue crab Callinectes sapidus. Frontiers in Physiology, 13, 1089164. DOI: https://doi.org/10.3389/fphys.2022.1089164. |
| 2022 | Nava-Gómez, G., Cordero-Esquivel, B., Díaz, F., Bricelj, M., García-Esquivel, Z. (2022). Survival, growth and biochemical composition of larvae of the lion's paw scallop, Nodipecten subnodosus, in batch-and flow-through culture. Aquaculture, 555, 738181. DOI: https://doi.org/10.1016/j.aquaculture.2022.738181. |
| 2022 | Meza-Buendia, A., Aparicio-Trejo, O., Díaz, F., Caamal-Monsreal, C., Pedraza-Chaverri, J., Álvarez-Delgado, C., Paschke, K., Rosas, C. (2022). High resolution respirometry of isolated mitochondria from adult Octopus maya (class: cephalopoda) systemic heart. PloS one, 17 (8), e0273554. DOI: https://doi.org/10.1371/journal.pone.0273554. |
| 2022 | Tremblay, N., García‐Guerrero, M., Díaz, F., Caamal‐Monsreal, C., Rodríguez‐Fuentes, G., Paschke, K., Gebauer, P., Rosas, C. (2022). Long‐term mild hypoxia does not reduce thermal tolerance or performance of the freshwater prawn Macrobrachium tenellum. Aquaculture Research, 53 (1), 63-74. DOI: https://doi.org/10.1111/are.15553. |
| 2021 | Meza‐Buendía, A., Trejo‐Escamilla, I., Piu, M., Caamal‐Monsreal, C., Rodríguez‐Fuentes, G., Díaz, F., Re, D., Galindo‐Sánchez, C., Rosas, C. (2021). Why high temperatures limit reproduction in cephalopods? The case of Octopus maya. Aquaculture Research, 52 (11), 5111-5123. DOI: https://doi.org/10.1111/are.15387. |
| 2021 | López-Landavery, E., Carpizo-Ituarte, E., Pérez-Carrasco, L., Díaz, F., Cruz, F., García-Esquivel, Z., Hernández-Ayón, J., Galindo-Sánchez, C. (2021). Acidification stress effect on umbonate veliger larval development in Panopea globosa. Marine Pollution Bulletin, 163, 111945. DOI: https://doi.org/10.1016/j.marpolbul.2020.111945. |
| 2021 | Larios-Soriano, E., Re-Araujo, A., Díaz, F., López-Galindo, L., Rosas, C., Ibarra-Castro, L. (2021). Effects of recent thermal history on thermal behaviour, thermal tolerance and oxygen uptake of yellowtail kingfish (Seriola lalandi) juveniles. Journal of Thermal Biology, 99, 103023. DOI: https://doi.org/10.1016/j.jtherbio.2021.103023. |
| 2021 | Díaz, F., Re-Araujo, A., Carpizo-Ituarte, E., Garcia-Esquivel, Z., Larios-Soriano, E., Perez-Carrasco, L., Lerma, E. (2021). Thermal physiological performance and thermal metabolic scope of the whelk Kelletia kelletii (forbes, 1850)(Gastropoda: Neptuneidae) acclimated to different temperatures. Zoological Studies, 60, e44. DOI: https://doi.org/10.6620/ZS.2021.60-44. |
| 2020 | Ángeles-González, L., Lima, F., Caamal-Monsreal, C., Díaz, F., Rosas, C. (2020). Exploring the effects of warming seas by using the optimal and pejus temperatures of the embryo of three octopoda species in the Gulf of Mexico. Journal of Thermal Biology, 94, 102753. DOI: https://doi.org/10.1016/j.jtherbio.2020.102753. |
| 2020 | Larios‐Soriano, E., Re‐Araujo, A., Díaz, F., Sánchez, C., López‐Galindo, L., Castro, L., Ramírez, D. (2020). Effect of acclimation temperature on thermoregulatory behaviour, thermal tolerance and respiratory metabolism of Lutjanus guttatus and the response of heat shock protein 70 (Hsp70) and lactate dehydrogenase (Ldh-a) genes. Aquaculture Research, 51 (3), 1089-1100. DOI: https://doi.org/10.1111/are.14455. |
| 2020 | Montiel‐Arzate, A., Sánchez‐Castrejón, E., Camacho‐Jiménez, L., Díaz, F., Ponce‐Rivas, E. (2020). Effect of recombinant crustacean hyperglycemic hormones rchh‐b1 and rchh‐b2 on lipid metabolism in the pacific white shrimp Litopenaeus vannamei. Aquaculture Research, 51 (10), 4267-4278. DOI: https://doi.org/10.1111/are.14769. |
Ángel Escamilla Aké
| AÑO | AUTORES / PUBLICACIONES |
|---|---|
| 2024 | Ángeles-González, L., Torrejón-Magallanes, J., Escamilla-Aké, A., Osorio-Olvera, L., Avendaño, O., Díaz, F., Rosas, C. (2024). Can upwelling regions be potential thermal refugia for marine fishes during climate warming?. Journal of Thermal Biology, 123, 103893. DOI: https://doi.org/10.1016/j.jtherbio.2024.103893. |
| 2024 | Escamilla-Aké, Á., Angeles-Gonzalez, L. E., Kurczyn, A., Caamal-Monsreal, C., Rosas, C. (2024). How to quantify the regional effects of ocean temperature rise due to climate change: implications of Octopus maya ecophysiology on food security of the Yucatan shelf artisanal fishermen. Regional Environmental Change, 24(2), 81. DOI: https://doi.org/10.1007/s10113-024-02236-1. |
| 2023 | Escamilla‐Aké, Á., Angeles‐Gonzalez, L. E., Caamal‐Monsreal, C., Rosas, C. (2023). A general model fitting coleoid cephalopod growth as a function of time and temperature to a single curve. Aquaculture, Fish and Fisheries, 3(6), 539-549. DOI: https://doi.org/10.1002/aff2.133. |
| 2021 | Ángeles-González, L., Martínez-Meyer, E., Rosas, C., Guarneros-Narváez, P., López-Rocha, J., Escamilla-Aké, Á., Osorio-Olvera, L., Yáñez-Arenas, C. (2021). Long-term environmental data explain better the abundance of the red octopus (Octopus maya) when testing the niche centroid hypothesis. Journal of Experimental Marine Biology and Ecology, 544, 151609. DOI: https://doi.org/10.1016/j.jembe.2021.151609. |
Clara Eliza Galindo-Sánchez

Extensión 27163
Sus investigaciones se centran en el estudio de las adaptaciones fisiológicas y estrategias reproductivas ante cambios ambientales, a nivel genómico y transcriptómico en organismos marinos. También trabaja con genómica poblacional y metabarcoding de organismos marinos.
| AÑO | AUTORES / PUBLICACIÓN |
|---|---|
| 2024 | Ramos-Rodríguez, S., Ortega-Ramírez, K., Méndez-Can, L., Galindo-Sánchez, C., Galindo-Torres, P., Ventura-López, C., Mascaró, M., Caamal-Monsreal, C., Rodríguez, G., Díaz, F., Rosas, C. (2024). The hard life of an octopus embryo is seen through gene expression, energy metabolism, and its ability to neutralize radical oxygen species. Scientific Reports, 14 (1), 16510. DOI: https://doi.org/10.1038/s41598-024-67335-9. |
| 2024 | Rosas, C., Markaida, U., López-Rocha, J., Díaz, F., Re, D., Caamal-Monsreal, C., Gallardo, P., Pascual, C., Galindo-Sánchez, C., Juárez, O., López-Galindo, L., Ventura-López, C. (2024). Octopus maya, the mayan octopus. Octopus Biology and Ecology, 95-117. DOI: https://doi.org/10.1016/B978-0-12-820639-3.00009-1. |
| 2024 | Juárez, O., Galindo-Sánchez, C., Cruz, F., Enciso, S., López-Landavery, E., Muñoz, C., Aguilera, F., Lazo, J. (2024). Physiological and transcriptomic effects of formulated diets including the prebiotics inulin, β-glucan, and chitosan on juveniles of Totoaba macdonaldi. Aquaculture International, 32 (1), 61-85. DOI: https://doi.org/10.1007/s10499-023-01144-1. |
| 2024 | Martínez-Mercado, M., Cembella, A., Sánchez-Castrejón, E., Saavedra-Flores, A., Galindo-Sánchez, C., Durán-Riveroll, L. (2024). Functional diversity of bacterial microbiota associated with the toxigenic benthic dinoflagellate Prorocentrum. Plos one, 19 (7), e0306108. DOI: https://doi.org/10.1371/journal.pone.0306108. |
| 2024 | Juárez, O., Morales-Guerrero, B., Liñán-Cabello, M., Carpizo-Ituarte, E., Delgadillo-Nuño, E., Delgadillo-Nuño, M., Gómez-Reyes, R., Ventura-López, C., Cabral-Tena, R., Galindo-Sánchez, C. (2024). Transcriptome characterization of Pocillopora grandis transplanted into reefs with different health conditions: potential stress indicators at the holobiont level. Latin american journal of aquatic research, 52 (1), 119-149. DOI: https://doi.org/10.3856/vol52-issue1-fulltext-2991. |
| 2023 | Domínguez-Castanedo, O., Palomino-Cruz, D., Mascaró, M., Rodríguez-Fuentes, G., Juárez, O., Galindo-Sánchez, C., Caamal-Monsreal, C., Torres, P., Díaz, F., Rosas, C. (2023). Trans-generational physiological condition of embryos is conditioned by maternal thermal stress in Octopus maya. Marine Biology, 170 (4), 41. DOI: https://doi.org/10.1007/s00227-023-04183-7. |
| 2023 | Ángeles-González, L., Re-Araujo, A., Díaz, F., Caamal-Monsreal, C., Rodríguez-Fuentes, G., Galindo-Sánchez, C., Mascaró, M., Pascual, C., Rosas, C. (2023). Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. Journal of Thermal Biology, 114, 103495. DOI: https://doi.org/10.1016/j.jtherbio.2023.103495. |
| 2023 | Gómez-Reyes, R., Galindo-Sánchez, C., Cruz, F., Hernández-Ayón, J., Valenzuela-Wood, E., López-Galindo, L. (2023). Individual pattern response to CO2-induced acidification stress in Haliotis rufescens suggests stage-specific acclimatization during its early life history. Sustainability, 15 (18), 14010. DOI: https://doi.org/10.3390/su151814010. |
| 2023 | López-Landavery, E., Galindo-Sánchez, C., López-Galindo, L., Ramírez-Álvarez, N., Saavedra-Flores, A., Amador-Cano, G., Ventura-López, C., Ángel, P., Hernández-Herrera, R. (2023). Hydrocarbons occurrence and transcriptomic response of oyster Crassostrea virginica from lagoons of the Southern Gulf of Mexico. Frontiers in Marine Science,10, 1085858. DOI: https://doi.org/10.3389/fmars.2023.1085858. |
| 2023 | Gasca-Pineda, J., Galindo-Sánchez, C., Martinez-Mercado, M., Jiménez-Rosenberg, S., Hereu, C., Nakamura, Y., Herzka, S., Compaire, J., Gomez-Reyes, R., Robles-Flores, J., Saavedra-Flores, A., Arteaga, M. (2023). Community structure and diversity of five groups of zooplankton in the Perdido region of the Gulf of Mexico using DNA metabarcoding. Aquatic Ecology, 57 (1), 149-164. DOI: https://doi.org/10.1007/s10452-022-10002-w. |
| 2023 | Morales-Pulido, J., Galindo-Sánchez, C., Jiménez-Rosenberg, S., Arteaga, M., Batta-Lona, P., Herzka, S. (2023). Identification of Bothus ocellatus and Bothus robinsi larvae using morphological and molecular approaches leads to a distribution record for the Gulf of Mexico. Environmental Biology of Fishes, 106 (1), 43-59. DOI: https://doi.org/10.1007/s10641-022-01370-1. |
| 2023 | Morales-Pulido, J., Munguia-Vega, A., Jiménez-Rosenberg, S., Rocha-Olivares, A., Galindo-Sánchez, C. (2023). Genetic connectivity in twospot flounder (Bothus robinsi) across the Gulf of Mexico, inferred with single nucleotide polymorphisms from larvae and adults. Frontiers in Marine Science, 10, 1070483. DOI: https://doi.org/10.3389/fmars.2023.1070483. |
| 2022 | Cicala, F., Arteaga, M., Herzka, S., Hereu, C., Jimenez‐Rosenberg, S., Saavedra‐Flores, A., Robles‐Flores, J., Gomez, R., Batta‐Lona, P., Galindo‐Sánchez, C. (2022). Environmental conditions drive zooplankton community structure in the epipelagic oceanic water of the Southern Gulf of Mexico: a molecular approach. Molecular Ecology, 31 (2), 546-561. DOI: https://doi.org/10.1111/mec.16251. |
| 2022 | Ventura-López, C., López-Galindo, L., Rosas, C., Sánchez-Castrejón, E., Galindo-Torres, P., Pascual, C., Rodríguez-Fuentes, G., Juárez, O., Galindo-Sánchez, C. (2022). Sex-specific role of the optic gland in Octopus maya: a transcriptomic analysis. General and Comparative Endocrinology, 320, 114000. DOI: https://doi.org/10.1016/j.ygcen.2022.114000. |
| 2022 | Juárez, O., Arreola-Meraz, L., Sánchez-Castrejón, E., Avila-Poveda, O., López-Galindo, L., Rosas, C., Galindo-Sánchez, C. (2022). Oviducal gland transcriptomics of Octopus maya through physiological stages and the negative effects of temperature on fertilization. PeerJ, 10, e12895. DOI: https://doi.org/10.7717/peerj.12895. |
| 2022 | Martinez-Mercado, M., Jesús, J., Galindo-Sánchez, C., Saavedra-Flores, A., Carrillo-Tripp, J. (2022). Novel viral RNA genomes of the vine mealybug Planococcus ficus. Journal of General Virology, 103 (3), 001717. DOI: https://doi.org/10.1099/jgv.0.001717. |
| 2022 | Vecchio, G., Galindo-Sánchez, C., Tripp-Valdez, M., López-Landavery, E., Rosas, C., Mascaró, M. (2022). Transcriptomic response in thermally challenged seahorses Hippocampus erectus: the effect of magnitude and rate of temperature change. Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular. DOI: https://doi.org/10.1016/j.cbpb.2022.110771. |
| 2022 | Domínguez-Estrada, A., Galindo-Sánchez, C., Ventura-López, C., Rosas, C., Juárez, O. (2022). Response of optic gland pathways to thermal stress in the reproductive phase of female Octopus maya. Journal of Molluscan Studies, 88 (3), eyac018. DOI: https://doi.org/10.1093/mollus/eyac018. |
| 2022 | López-Landavery, E., Amador-Cano, G., Tripp-Valdez, M., Ramírez-Álvarez, N., Cicala, F., Gómez-Reyes, R., Díaz, F., Re-Araujo, A., Galindo-Sánchez, C. (2022). Hydrocarbon exposure effect on energetic metabolism and immune response in Crassostrea virginica. Marine Pollution Bulletin, 180, 113738. DOI: https://doi.org/10.1016/j.marpolbul.2022.113738. |
| 2022 | Vargas-Peralta, C., Araneda, C., Galindo-Sanchez, C., Larrain, M., Rio-Portilla, M., Cruz, F. (2022). Species identification in Haliotis genus from the northeastern Pacific Ocean using genome-wide RAD-SNPS. Food Control, 138, 108979. DOI: https://doi.org/10.1016/j.foodcont.2022.108979. |
| 2022 | Mendoza-Flores, A., Galindo-Sánchez, C., Sánchez-Saavedra, M. (2022). Effects of the light irradiance on the growth and lipids content of Amphidinium carterae (Dinophyceae) for biofuel production. 16, 348-356. DOI: https://doi.org/10.1007/s12155-022-10455-9. |
| 2022 | Ramos, A., Aquino, M., García, G., Gaspar, M., Cruz, C., Saavedra-Flores, A., Brom, S., Cervantes-Rivera, R., Galindo-Sánchez, C., Hernandez, R., Puhar, A., Lupas, A., Sepulveda, E. (2022). RpuS/R is a novel two-component signal transduction system that regulates the expression of the pyruvate symporter MctP in Sinorhizobium fredii NGR234. Frontiers in Microbiology, 13, 871077. DOI: https://doi.org/10.3389/fmicb.2022.871077. |
| 2021 | Meza‐Buendía, A., Trejo‐Escamilla, I., Piu, M., Caamal‐Monsreal, C., Rodríguez‐Fuentes, G., Díaz, F., Re, D., Galindo‐Sánchez, C., Rosas, C. (2021). Why high temperatures limit reproduction in cephalopods? The case of Octopus maya. Aquaculture Research, 52 (11), 5111-5123. DOI: https://doi.org/10.1111/are.15387. |
| 2021 | Tripp-Valdez, M., Cicala, F., Galindo-Sánchez, C., Chacon-Ponce, K., Lopez-Landavery, E., Díaz, F., Re-Araujo, D., Cruz, F. (2021). Growth performance and transcriptomic response of warm-acclimated hybrid abalone Haliotis rufescens (♀) × H. corrugata (♂). Marine Biotechnology, 23 (1), 62-76. DOI: https://doi.org/10.1007/s10126-020-10002-7. |
| 2021 | López-Landavery, E., Carpizo-Ituarte, E., Pérez-Carrasco, L., Díaz, F., Cruz, F., García-Esquivel, Z., Hernández-Ayón, J., Galindo-Sánchez, C. (2021). Acidification stress effect on umbonate veliger larval development in Panopea globosa. Marine Pollution Bulletin, 163, 111945. DOI: https://doi.org/10.1016/j.marpolbul.2020.111945. |
| 2021 | Martinez, M., Hereu, C., Arteaga, M., Jiménez-Rosenberg, S., Herzka, S., Saavedra-Flores, A., Robles-Flores, J., Gomez-Reyes, R., Batta-Lona, P., Gasca-Pineda, J., Galindo-Sánchez, C. (2021). Epipelagic zooplankton diversity in the deep water region of the Gulf of Mexico: a metabarcoding survey. ICES Journal of Marine Science, 78 (9), 3317-3332. DOI: https://doi.org/10.1093/icesjms/fsab090. |
| 2021 | Juárez, O., Cruz, F., Lazo, J., Delgado-Vega, R., Chávez-García, D., López-Landavery, E., Tovar-Ramírez, D., Galindo-Sánchez, C. (2021). Transcriptomic assessment of dietary fishmeal partial replacement by soybean meal and prebiotics inclusion in the liver of juvenile pacific yellowtail (Seriola lalandi). Molecular Biology Reports, 48, 7127-7140. DOI: https://doi.org/10.1007/s11033-021-06703-4. |
| 2021 | Mendoza-Flores, A., Leyva-Valencia, I., Hernández-Sandoval, F., Galindo-Sánchez, C., Band-Schmidt, C., Bustillos-Guzmán, J. (2021). Relationship between paralytic shellfish toxin content and sxtA gene copy number in different growth phases of Gymnodinium catenatum (Dinophyceae). Toxicon, 199, 68-71. DOI: https://doi.org/10.1016/j.toxicon.2021.05.014. |
| 2020 | Hereu, C., Arteaga, M., Galindo-Sánchez, C., Herzka, S., Batta-Lona, P., Jiménez-Rosenberg, S. (2020). Zooplankton summer composition in the southern Gulf of Mexico with emphasis on salp and hyperiid amphipod assemblages. Journal of the Marine Biological Association of the United Kingdom, 100(5), 665-680. DOI: https://doi.org/10.1017/S0025315420000715. |
| 2020 | Larios‐Soriano, E., Re‐Araujo, A., Díaz, F., Galindo-Sánchez, C., López‐Galindo, L., Castro, L., Ramírez, D. (2020). Effect of acclimation temperature on thermoregulatory behaviour, thermal tolerance and respiratory metabolism of Lutjanus guttatus and the response of heat shock protein 70 (Hsp70) and lactate dehydrogenase (Ldh-a) genes. Aquaculture Research, 51 (3), 1089-1100. DOI: https://doi.org/10.1111/are.14455. |
| 2020 | Delgadillo-Nuño, M., Liñán-Cabello, M., Delgadillo-Nuño, E., Galindo-Sánchez, C., Carpizo-Ituarte, E. (2020). Gene expression plasticity in Pocillopora corals from 2 locations on the Carrizales Reef, Pacific Coast of Mexico. Ciencias marinas, 46 (2), 89-100. https://doi.org/10.7773/cm.v46i2.3062. |




