Published March 18, 2025 | Version v1

Thermal Biology and Metabolic Scope of Two Species of Juvenile Gastropod Mollusks Inhabiting Kelp Forests

  • 1. GLaboratorio de Ecofisiología de Organismos Acuáticos, Departamento de Biotecnología Marina, Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Baja California, 22860, México. *Correspondence: E-mail: denisre@cicese.edu.mx (Re-Araujo) E-mail: fdiaz@cicese.edu (Díaz); sanchezjp@cicese.edu.mx (Sánchez-Ovando); ibeth@cicese.mx (Álvarez-Lee); luis.angeles0612@gmail. com (Angeles-Gonzalez)
  • 2. Laboratorio de Genética Acuícola, Departamento de Acuicultura, Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Baja California, 22860, México. E-mail: flafarga@cicese.mx (Lafarga-De la Cruz)

Description

Re-Araujo, Ana Denise, Díaz, Fernando, Sánchez-Ovando, Juan Pablo, De, Fabiola Lafarga-, Álvarez-Lee, Laura, Angeles-Gonzalez, Luis Enrique (2025): Thermal Biology and Metabolic Scope of Two Species of Juvenile Gastropod Mollusks Inhabiting Kelp Forests. Zoological Studies 64 (6): 1-11, DOI: 10.6620/ZS.2025.64-06, URL: http://dx.doi.org/10.5281/zenodo.16970557

Files

source.pdf

Files (5.0 MB)

Name Size Download all
md5:5bad87b530bfcb1d7dfdbff8781db38d
5.0 MB Preview Download

Linked records

Additional details

Identifiers

LSID
urn:lsid:plazi.org:pub:FFADFFB5FFBFCB1DFFFDFFF8781DFF8D

References

  • Aguilar-Mora F. 2012. Dieta natural de Megathura crenulata (Sowerby, 1825) en arrecifes rocosos de la costa Pacifico de Baja California Sur. In: Perez-Ramirez M, Lluch-Cota SE (eds) Biodiversidad y vulnerabilidad de ecosistemas costeros en Baja California Sur. Aportaciones de estudiantes de grado, posgrado y posdoctorado 2008-2012. Centro de Investigaciones Biologicas del Noroeste, S.C., pp. 256-268.
  • Angeles-Gonzalez LE, Re-Araujo AD, Diaz F, Caamal-Monsreal C, Rodriguez-Fuentes G et al. 2023. Thermal optimality and physiological parameters inferred from experimental studies scale latitudinally with marine species occurrences. J Therm Biol 114:103495. doi:10.1016/j.jtherbio.2023.103495.
  • Angeles-Gonzalez LE, Torrejon-Magallanes J, Escamilla-Ake A, Osorio-Olvera L, Avendano O et al. 2024. Can upwelling regions be potential thermal refugia for marine fishes during climate warming? J Therm Biol 123:103893. doi:10.1016/ j.jtherbio.2024.103893.
  • Arafeh-Dalmau N, Cavanaugh KC, Possingham HP, Munguia-Vega A, Montano-Moctezuma G et al. 2021. Southward decrease in the protection of persistent giant kelp forests in the northeast Pacific. Commun Earth Environ 2:1-7. doi:10.1038/s43247-021-00177- 9.
  • Assan D, Kuebutornye FKA, Mustapha UF, Chen H, Li G. 2020. Effects of climate change on marine organisms. Am J Clim Change 9:204-216. doi:10.4236/ajcc.2020.93013.
  • Bennett WA, Beitinger TL. 1997. Temperature tolerance of the sheepshead minnow, Cyprinodon variegatus. Copeia 1:77-87. doi:10.2307/1447842.
  • Bonett-Calzada B, Valenzuela-Quinonez F, Del Rio-Portilla, MA, Bayona-Vasquez NJ, Vargas-Peralta CE et al. 2024. Genetic Insights into the Giant Keyhole Limpet (Megathura crenulata), an Eastern Pacific Coastal Endemic: Complete Mitogenome, Phylogenetics, Phylogeography, and Historical Demography. Genes 15:1303. doi:10.3390/genes15101303.
  • Cavanaugh KC, Reed DC, Bell TW, Castorani MC, Beas-Luna R. 2019. Spatial variability in the resistance and resilience of giant kelp in southern and Baja California to a multiyear heatwave. Front Mar Sci 6:413. doi:10.3389/fmars.2019.00413.
  • Cerezo-Valverde J, Martinez-Lopez FJ, Garcia-Garcia B. 2006. Oxygen consumption and ventilatory frequency responses to gradual hypoxia in common dentex (Dentex dentex): basis for suitable oxygen level estimations. Aquaculture 256:542-551. doi:10.1016/j.aquaculture.2006.02.030.
  • Cox DK. 1974. Effect of three heating rates on the critical thermal maximum of bluegill. In: Gibbons JW, Sharitz RR (eds) Thermal Ecology. AEC Symposium Series. Springfield, pp. 158-163.
  • Cox TE, Murray SN. 2006. Feeding preferences and the relationships between food choice and assimilation efficiency in the herbivorous marine snail Lithopoma undosum (Turbinidae). Mar Biol 148:1295-1306. doi:10.1007/s00227-005-0166-3.
  • Cunha TJ, Lemer S, Bouchet P, Kano Y, Giribet G. 2019. Putting keyhole limpets on the map: phylogeny and biogeography of the globally distributed marine family Fissurellidae (Vetigastropoda, Mollusca). Mol Phyl Evol 135:249-269. doi:10.1016/ j.ympev.2019.02.008.
  • Deutsch CA, Tewksbury JJ, Huey RB, Sheldon KS, Ghalambor CK et al. 2008. Impacts of climate warming on terrestrial ectotherms across latitude. Proc Natl Acad Sci USA 105:6669-6672. doi:10.1073/pnas.0709472105.
  • Diaz F, Re-Araujo AD, Carpizo-Ituarte E, Garcia-Esquivel Z, Larios- Soriano E et al. 2021. Thermal physiological performance and thermal metabolic scope of the whelk Kelletia kelletii (Forbes, 1850) (Gastropoda: Neptuneidae) acclimated to different temperatures. Zool Stud 60:44. doi:10.6620/ZS.2021.60-44.
  • Diaz F, Re AD, Salas A, Galindo-Sanchez CE, Gonzalez MA et al. 2015. Behavioral thermoregulation and critical thermal limits of giant keyhole limpet Megathura crenulata (Sowerby 1825) (Mollusca; Vetigastropoda). J Therm Biol 54:133-138. doi:10.1016/j.jtherbio.2013.05.007.
  • Diaz F, Salas A, Re AD, Gonzalez M, Reyes I. 2011. Thermal preference and tolerance of Megastrea (Lithopoma) undosa (Wood 1828) (Gastropoda: Turbinidae). J Therm Biol 36:34-37. doi:10.1016/j.jtherbio.2010.10.004.
  • DOF (Diario Oficial de la Federacion / Official Gazette of the Federation). 2018. Actualizacion de la Carta Nacional Pesquera. Secretaria de Agricultura, Ganaderia, Desarrollo Rural, Pesca y Alimentacion, Diario Oficial de la Federacion, Ciudad de Mexico. Available at: http://dof.gob.mx/nota_detalle.php?codigo =5525712&fecha=11/06/2018. Accessed 20 Jan. 2024.
  • Edwards MS, Estes JA. 2006. Catastrophe, recovery, and range limitation in NE Pacific kelp forests: A large-scale perspective. Mar Ecol Prog Ser 320:79-87. doi:10.3354/meps320079.
  • Folguera G, Bastias DA, Caers J, Rojas JM, Piulachs MD et al. 2011. An experimental test of the role of environmental temperature variability on ectotherm molecular, physiological and life-history traits: Implications for global warming. Comp Biochem Physiol 159:242-246. doi:10.1016/j.cbpa.2011.03.002.
  • Gluyas-Millan MG, Quinonez-Velazquez C, Masso-Rojas A, Melo- Barrera F. 1999. Diferencias en la relacion talla edad del caracol panocha Astraea undosa (Wood 1828) entre dos localidades de Bahia Tortugas, Baja California Sur, Mexico. Ciencias Marinas 25:91-106.
  • Gotshall DW. 1994. Guide to marine invertebrates Alaska to Baja. Sea Challengers, Monterey.
  • Harris JR, Markl J. 1999. Keyhole limpet hemocyanin (KLH): a biomedical review. Micron 30:597-623. doi:10.1016/s0968- 4328(99)00036-0.
  • Helmuth B, Broitman BR, Blanchette CA, Gilman S, Halpin P et al. 2006. Mosaic patterns of thermal stress in the rocky intertidal zone: implications for climate change. Ecol Monogr 76:461-479. doi:10.1890/0012-9615(2006)076[0461:MPOTSI]2.0.CO;2.
  • Hernandez-Padilla JC, Navarro-Gonzalez JA, Salcido-Guevara LA, Sanchez-Cardenas R, Gutierrez-Gonzalez JL et al. 2021. Variacion espacio-temporal en la densidad y estructura de tallas de Megastraea undosa (Gastropoda: Turbinidae) en la costa occidental de Baja California Sur, Mexico. Rev Biol Mar Oceanogr 56:176-185. doi:10.22370/rbmo.2021.56.3.3179.
  • Huey RB, Kearney MR, Andrew K, Holthum JAM, Jess M, Williams SE. 2012. Predicting organismal vulnerability to climate warming: roles of behaviour, physiology and adaptation. Philos Trans R Soc Lond B Biol Sci 367:1665-1679. doi:10.1098/ rstb.2012.0005.
  • IPCC (Intergovernmental Panel on Climate Change). 2022. Cambio climatico. Impactos, adaptacion y vulnerabilidad. Sexto informe de evaluacion, grupo intergubernamental de expertos sobre el cambio climatico. Available at: https://www.ipcc.ch/report/ar6/ wg2/. Accessed 14 Feb. 2024.
  • Kleisner KM, Fogarty MJ, McGee S, Barnett A, Fratantoni P et al. 2016. The effects of sub-regional climate velocity on the distribution and spatial extent of marine species assemblages. PLoS ONE 11:e0149220. doi:10.1371/journal.pone.0149220.
  • Kushner DJ, Rassweiler A, McLaughlin JP, Lafferty KD. 2013. A multi-decade time series kelp forest community structure at the California Channel Islands. Ecological Archives E094-245. Ecology 94:2655. doi:10.1890/13-0562R.1.
  • Luthi D, Le-Floch M, Bereiter B, Blunier T, Barnola JM et al. 2008. High resolution carbone dioxide concentrations record 650,000- 800,000 years before present. Nature 453:379-382. doi:10.1038/ nature06949.
  • Manriquez PH, Jara ME, Gonzalez CP, Diaz MI, Brokordt K, Lattuca ME, Peck MA, Alter K, Marras S, Domenici P. 2020. Combined effect of p CO2 and temperature levels on the thermal niche in the early benthic ontogeny of a keystone species. Sci Total Environ 719:137239. doi:10.1016/j.scitotenv.2020.137239.
  • Martin GG, Martin A, Tsai W, Hafner JC. 2011. Production of digestive enzymes along the gut of the giant keyhole limpet Megathura crenulata (Mollusca: Vetigastropoda). Comp Biochem Physiol 160:365-373. doi:10.1016/j.cbpa.2011.07.003.
  • Mazariegos-Villarreal A, Pinon-Gimate A, Aguilar-Mora F, Medina M, Serviere-Zaragoza E. 2013. Diet of the keyhole limpet Megathura crenulata (Mollusca: Gastropoda) in subtropical rocky reefs. J Shellfish Res 32:297-303. doi:10.2983/035.032.0208.
  • McLean JH. 1978. Marine shells of southern California. Natural History Museum of Los Angeles County, Los Angeles.
  • Meinshausen M, Smith SJ, Calvin K, Daniel JS, Kainuma MLT et al. 2011. The RCP greenhouse gas concentrations and their extensions from 1765 to 2300. Clim Change 109:213-241. doi:10.1007/s10584-011-0156-z.
  • Mora C, Ospina AF. 2001. Tolerance to high temperatures and potential impact of sea warming on reef fishes of Gorgona Island (tropical eastern Pacific). Mar Biol 139:765-769. doi:10.1007/ s002270100626.
  • Morley SA, Lemmon V, Obermuller BE, Spicer JI, Clark MS et al. 2011. Duration tenacity: a method for assessing acclimatory capacity of the Antarctic limpet Nacella concinna. J Exp Mar Biol Ecol 399:39-42. doi:10.1016/j.jembe.2011.01.013.
  • Morris RH, Abbott DP, Haderlie EC. 1980. Intertidal Invertebrates of California. Stanford, University Press, Stanford.
  • Mueter FJ, Litzow MA. 2008. Sea ice retreat alters the biogeography of the Bering Sea continental shelf. Ecol Appl 18:309-320. doi:10.1890/07-0564.1.
  • Nguyen KDT, Morley SA, Lai CH, Clark MS, Tan KS, Bates AE, Peck LS. 2011. Upper temperature limits of tropical marine ectotherms: Global warming implications. PLoS ONE 6:e29340. doi:10.1371/journal.pone.0029340.
  • Oakes FR, McTee S, McMullen J, Culver CS, Morse DE. 2004. The effect of captivity and diet on KLH isoform ratios Megathura crenulata. Comp Biochem Physiol A Mol Integr Physiol 138:169-173. doi:10.1016/j.cbpb.2004.03.009.
  • Paschke K, Aguero J, Gebauer P, Diaz F, Mascaro M et al. 2018. Comparison of aerobic scope for metabolic activity in aquatic ectotherms with temperature related metabolic stimulation: a novel approach for aerobic power budget. Front Physiol 9:1438. doi:10.3389/fphys.2018.01438.
  • Payne NL, Morley SA, Halsey LG, Smith JA, Stuart-Smith R et al. 2021. Fish heating tolerance scales similarly across individual physiology and populations. Commun Biol 4:264. doi:10.1038/ s42003-021-01773-3.
  • Peck LS, Morley SA, Richard J, Clark MS. 2014. Acclimation and thermal tolerance in Antarctic marine ectotherms. J Exp Biol 217:16-22. doi:10.1242/jeb.089946.
  • Portner HO. 2002. Climate variations and the physiological basis of temperature dependent biogeography: systemic to molecular hierarchy of thermal tolerance in animals. Comp Biochem Physiol A Mol Integr Physiol 132:739-761. doi:10.1016/S1095- 6433(02)00045-4.
  • Portner HO, Bock C, Knust R, Lanning G, Lucassen M et al. 2008. Cod and climate in a latitudinal cline: physiological analyses of climate effects in marine fishes. Clim Res 37:253-270. doi:10.3354/cr00766.
  • Reed DC. 2020. SBC LTER: Reef: Kelp Forest Community Dynamics: Invertebrate and algal density. Santa Barbara Coastal LTER. knb-lter-sbc.19.26. Available at: https://portal. edirepository.org/nis/mapbrowse?packageid=knb-lter-sbc.19.26.
  • Sanford E. 2002. Water temperature, predation, and the neglected role of physiological rate effects in rocky intertidal communities. Integr Comp Biol 42:881-891. doi:10.1093/icb/42.4.881.
  • Smith C, Carlton J. 1975. Light's Manual. Intertidal Invertebrates of the Central California Coast. 3a ed. Uni. Cal. Press. pp. 464-500.
  • Somero GN. 2010. The physiology of climate change: how potentials for acclimatization and genetic adaptation will determine 'winners' and 'losers'. J Exp Biol 213:912-920. doi:10.1242/ jeb.037473.
  • Spies I, Gruenthal KM, Drinan DP, Hollowed AB, Stevenson DE et al. 2020. Genetic evidence of a northward range expansion in the eastern Bering Sea stock of Pacific cod. Evol Appl 13:362-375. doi:10.1111/eva.12874.
  • Stenseng EM, Braby CE, Somero GN. 2005. Evolutionary and acclimation-induced variation in the thermal limits of heart function in congeneric marine snails (genus Tegula): implications for vertical zonation. Biol Bull 208:138-144. doi:10.2307/3593122.
  • Stillman J, Somero GN. 2000. A comparative analysis of the upper thermal tolerance limits of eastern Pacific porcelain crabs, genus Petrolisthes: influences of latitude, vertical zonation, acclimation, and phylogeny. Physiol Biochem Zool 73:200-208. doi:10.1086/316738.
  • Sunday JM, Pecl GT, Frusher S, Hobday AJ, Hill N et al. 2015. Species traits and climate velocity explain geographic range shifts in an ocean-warming hotspot. Ecol Lett 18:944-953. doi:10.1111/ele.12474.
  • Taniguchi IK, Rogers-Bennett L. 2001. Wavy turban snail. In: Leet WS, Dewess CM, Larson RE (eds) California's living marine resources: A status report. University of California, Los Angeles, pp. 140-141.
  • Tomanek L, Somero GN. 1999. Evolutionary and acclimation-induced variation in the heath-shock responses of congeneric marine snails (genus Tegula) from different thermal habitats: implications for limits of thermotolerance and biogeography. J Exp Biol 202:2925-2936. doi:10.1242/jeb.202.21.2925.
  • Torres-Moye G, Edwards MS, Montano-Moctezuma CG. 2013. Benthic community structure in kelp forests from the Southern California Bight. Ciencias Marinas 39:239-252. doi:10.7773/ cm.v39i3.2250.
  • Viglione G. 2021. Sudden fevers are gripping parts of the ocean with increasing frequency. Scientists are scrambling to forecast them and prevent harm to marine life. Nature 593:26-28. doi:10.1038/ d41586-021-01142-4.
  • Vinagre C, Dias M, Cereja R, Abreu-Alfonso F, Flores AAV et al. 2019. Upper thermal limits and warming safety margins of coastal marine species. Indicator baseline for future references. Ecol Indic 102:644-649. doi:10.1016/j.ecolind.2019.03.030.
  • Wernberg T, Coleman MA, Bennett S, Thomsen MS, Tuya F et al. 2018. Genetic diversity and kelp forest vulnerability to climatic stress. Sci Rep 8:1851. doi:10.1038/s41598-018-20009-9.
  • Zar JH. 2010. Biostatistical Analysis, Vol. xiii, 5th edition. Upper Saddle River: Prentice-Hall/Pearson.