Behavioural and respiratory response of the shallow-water hermit crab Pagurus cuanensis to hydrostatic pressure and temperature

The evolutionary history of the Anomura has long been controversially discussed. One aspect that has received little attention is the dissimilarity in physiological tolerances of the related families Paguridae and Lithodidae to environmental conditions, and how this may have determined the divergenc...

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Autor principal: Thatje, S.
Otros Autores: Casburn, L., Calcagno, J.A
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: Elsevier B.V. 2010
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100 1 |a Thatje, S. 
245 1 0 |a Behavioural and respiratory response of the shallow-water hermit crab Pagurus cuanensis to hydrostatic pressure and temperature 
260 |b Elsevier B.V.  |c 2010 
270 1 0 |m Thatje, S.; National Oceanography Centre, School of Ocean and Earth Science, University of Southampton, Southampton, European Way, SO14 3ZH, Southampton, United Kingdom; email: svth@noc.soton.ac.uk 
506 |2 openaire  |e Política editorial 
504 |a Alekseeva, T.A., Zotin, A.I., Standard metabolism and macrotaxonomy of crustaceans (2001) Biol. Bull., 28, pp. 157-162 
504 |a Baeza, J.A., Fernández, M., Active brood care in Cancer setosus (Crustacea: Decapoda): The relationship between female behaviour, embryo oxygen consumption and the cost of brooding (2002) Funct. Ecol., 16, pp. 241-251 
504 |a Benson, B., Krause, D., The concentration and isotopic fractionation of oxygen dissolved in fresh-water and seawater in equilibrium with the atmosphere (1984) Limnol. Oceanogr., 29 (3), pp. 620-632 
504 |a Billock, W.L., Dunbar, S.G., Influence of motivation on behaviour in the hermit crab, Pagurus samuelis (2009) J. Mar. Biol. Assoc. UK, 89, pp. 775-779 
504 |a Brauer, A.W., Hydrostatic pressure effects on the central nervous system: Perspectives and outlook (1984) Philos. Trans. R. Soc. London Ser. B., 304 (1118), pp. 17-30 
504 |a Brauer, R.W., Beaver, R.W., Mansfield, W.M., O'Connor, F., White, L., Rate factors in the development of the high pressure neurological syndrome (1975) J. Appl. Physiol., 38, pp. 220-227 
504 |a Briffa, M., Elwood, R.W., Metabolic consequences of shell choice in Pagurus bernhardus: Do hermit crabs prefer cryptic or portable shells? Behav (2005) Ecol. Sociobiol., 59, pp. 143-148 
504 |a Carney, R.S., Haedrich, R.L., Rowe, G.T., Zonation of fauna in the deep sea (1983) The Sea.: Deep-Sea Biol., 8, pp. 371-398. , Rowe, G.T. (Ed.), Wiley, New York 
504 |a Childress, J.J., The effects of pressure, temperature and oxygen on the oxygen consumption rate of the midwater copepod Gaussia princeps (1977) Mar. Biol., 39, pp. 19-24 
504 |a Cunningham, C.W., Blackstone, N.W., Buss, L.W., Evolution of king crabs from hermit crab ancestors (1992) Nature, 355, pp. 539-542 
504 |a Elwood, R.W., Motivational change during resource assessment by hermit crabs (1995) J. Exp. Mar. Biol. Ecol., 193, pp. 41-55 
504 |a Elwood, R.W., Wood, K., Gallagher, M., Dick, J.T.A., Probing motivational state during agonistic encounters in animals (1998) Nature, 393, pp. 66-68 
504 |a Feldmann, R.M., Paralomis debodeorum, a new species of decapod crustacean from the Miocene of New Zealand: First notice of the Lithodidae in the fossil record (1998) NZ J. Geol. Geophys., 41, pp. 35-38 
504 |a Forest, J., Guinot, D., Sur une collection de Crustacés Décapodes et Stromatopodes de mers tunisiennes (1956) Bull. Stn. Océanog. Salammbô, 53, pp. 24-43 
504 |a Gage, J.D., Tyler, P.A., (1991) Deep sea biology: A natural history of organisms at the deep sea floor, , Cambridge University Press, Cambridge 
504 |a Gherardi, F., Hermit crab larval behavior: Depth regulation in Discorsopagurus schmitti Forest, J., 1955 Crustacés Décapodes, Pagurides (1995) J. Exp. Mar. Biol. Ecol., 192, pp. 107-123 
504 |a Hall, S., Thatje, S., Global bottlenecks in the distribution of marine Crustacea: Temperature constraints in the family Lithodidae (2009) J. Biogeogr., 36, pp. 2125-2135 
504 |a Hazlett, B.A., The behavioural ecology of hermit crabs (1981) Ann. Rev. Ecol. Syst., 12, pp. 1-22 
504 |a Herreid, C.F., Full, R.J., Energetics of hermit crabs during locomotion: The coast of carrying a shell (1986) J. Exp. Biol., 120, pp. 297-308 
504 |a Huntingford, F.A., Taylor, A.C., Smith, I.P., Thorpe, K.E., Behavioural and physiological studies of aggression in swimming crabs (1995) J. Exp. Mar. Biol. Ecol., 193, pp. 21-39 
504 |a Ingle, R., Hermit crabs of the Northeastern Atlantic Ocean and the Mediterranean Sea (1993) British Museum (Natural History), p. 495. , Chapman & Hall, London 
504 |a Jablonski, D., Sepkoski, J.J., Bottjer, D.J., Sheehan, P.M., Onshore-Offshore patterns in the evolution of phanerozoic shelf communities (1983) Science, 222, pp. 1123-1125 
504 |a Jaenicke, R., Biochemical processes under high hydrostatic pressure (1983) Naturwissenschaften, 70, pp. 332-341 
504 |a Lancaster, I., Pagurus bernhardus - an introduction to the natural history of the hermit crabs (1988) Field Stud, 7, pp. 189-238 
504 |a Martin, J.W., Abele, L.G., Phylogenetic relationships of the genus Aegla (Decapoda: Anomura:Aeglidae),with comments on anomuran phylogeny (1986) J. Crust. Biol., 6, pp. 576-616 
504 |a McGaw, I.J., Duff, S.D., Cardiovascular systemof anomuran crabs, genus Lopholithodes (2008) J. Morphol., 269, pp. 1295-1307 
504 |a McLaughlin, P.A., Hermit crabs-are they really polyphyletic? (1983) J Crust. Biol., 3, pp. 608-621 
504 |a McLaughlin, P.A., Lemaitre, R., Carcinization in the Anomura - fact or fiction? I. Evidence from adult morphology (1997) Contr. Zool., 67, pp. 79-123 
504 |a McLaughlin, P.A., Lemaitre, R., Tudge, C.C., Carcinization in the Anomura - fact or fiction? II. Evidence from larval, megalopal and early juvenile morphology (2004) Contr. Zool., 73, pp. 165-205 
504 |a McLaughlin, P.A., Lemaitre, R., Sorhannus, U., Hermit crab phylogeny: A reappraisal and its "fall-out" (2007) J. Crust. Biol., 27, pp. 97-115 
504 |a Mestre, N., Thatje, S., Tyler, P.A., The ocean is not deep enough: Pressure tolerances during early ontogeny of the blue mussel Mytilus edulis (2009) Proc. Roy. Soc. B, 276, pp. 717-726 
504 |a Milne Edwards, H., Observations zoologiques sur les Pagures et description d'un nouveau genre de la tribu des Paguriens (1836) Annals. Sci. Nat. Zool., 2, pp. 257-288 
504 |a Pechenik, J.A., Hsieh, J., Owara, S., Wong, P., Marshall, D., Untersee, S., Li, W., Factors selecting for avoidance of drilled shells by the hermit crab Pagurus longicarpus (2001) J. Exp. Mar. Biol. Ecol., 262, pp. 75-89 
504 |a Ravaux, J., Gaill, F., Le Bris, N., Sarradin, P.-M., Jollivet, D.B., Shillito, B., Heat-shock response and temperature resistance in the deep-sea vent shrimp Rimicaris exoculata (2003) J. Exp. Biol., 206, pp. 2345-2354 
504 |a Reese, E.S., Behavioral adaptations of intertidal hermit crabs (1969) Am. Zool., 9, pp. 343-355 
504 |a Robinson, N.J., Thatje, S., Osseforth, C., Heartbeat sensors under pressure: A new method for assessing hyperbaric physiology (2009) High Pressure Res, 29, pp. 422-430 
504 |a Saunders, G.W., Druehl, L.D., Nucleotide sequences of the small-subunit ribosomal RNA genes from selected Laminariales (Phaeophyta): Implications for kelp evolution (1992) J. Phycol., 28, pp. 544-549 
504 |a Selbie, C.M., The Decapoda Reptantia of the coasts of Ireland. Part II. Paguridae (1921) Sci. Invest. Fish. Board Ireland, 1, pp. 1-68 
504 |a Shillito, B., Jollivet, D., Sarradin, P.-M., Rodier, P., Lallier, F., Desbuyères, D., Gaill, F., Temperature resistance of Hesiolyra bergi, a polychaetous annelid living on deepsea vent smoker walls (2001) Mar. Ecol. Prog. Ser., 216, pp. 141-149 
504 |a Shumway, S.E., Osmotic balance and respiration in the hermit crab, Pagurus bernhardus, exposed to fluctuating salinities (1978) J. Mar. Biol. Assoc. U. K., 58, pp. 869-876 
504 |a Sokal, R.R., Rohlf, F.J., Biometry (1995) The principles and practice of statistics in Biological Research, p. 887. , Freeman, New York, NY 
504 |a Somero, G.N., Adaptations to high hydrostatic pressure (1992) Annu. Rev. Physiol., 54, pp. 557-577 
504 |a Southward, A.J., Hawkins, S.J., Burrows, M.T., Seventy years' observations of changes in distributions and abundance of zooplankton and intertidal organisms in the western English Channel in relation to rising sea temperature (1995) J. Therm. Biol., 20, pp. 127-155 
504 |a Stillman, J.H., Somero, G.N., Adaptation to temperature stress and aerial exposure in congeneric species of intertidal porcelain crabs (genus Petrolisthes): Correlation of physiology; biochemistry and morphology with vertical distribution (1996) J. Exp. Biol., 199, pp. 1845-1855 
504 |a Teal, J.M., Pressure effects on the respiration of vertically migrating decapod Crustacea (1971) Am. Zool., 11, pp. 571-576 
504 |a Tyler, P.A., Young, C.M., Temperature and pressure tolerances in dispersal stages of the genus Echinus (Echinodermata: Echinoidea): Prerequisites for deep-sea invasion and speciation (1998) Deep-Sea Res., 2 (45), pp. 253-277 
504 |a Underwood, A.J., Techniques of analysis of variance in marine biology and ecology (1981) Oceanogr. Mar. Biol. Annu. Rev., 19, pp. 513-605 
504 |a Wilcock, S.E., Wann, K.T., MacDonald, A.O., The motor activity of Crangon crangon subjected to a high hydrostatic pressure (1978) Mar. Biol., 45, pp. 1-7 
504 |a Wolff, T., Description of a remarkable deep-sea hermit crab with notes on the evolution of the Paguridae (1961) Galath. Rep., 4, pp. 11-32 
504 |a Zaklan, S.D., (2002) Review of the family Lithodidae (Crustacea: Anomura: Paguroidea): Distribution, biology and fisheries, pp. 58-845. , Crabs in ColdWater Regions: Biology,Management and Economics. Alaska Sea Grant College Program, Fairbanks, Alaska 
520 3 |a The evolutionary history of the Anomura has long been controversially discussed. One aspect that has received little attention is the dissimilarity in physiological tolerances of the related families Paguridae and Lithodidae to environmental conditions, and how this may have determined the divergence and radiation of the families into different distribution ranges, in particular with regard to the limited penetration of the deep sea by the Paguridae. This study investigates the physiological tolerances of the temperate shallow-water hermit crab, Pagurus cuanensis, to various temperature (5, 10, 15, 20°C) and pressure regimes (1 to 100 atm) by measuring the standard metabolic rate (SMR) and behavioural changes. SMR was primarily affected by temperature, with a notably low rate at 5°C throughout all pressures. Behaviour was affected by pressure, with an increase in pressure from 50 to 100 atmospheres (atm) resulting in reduced activity. It is suggested that this species can tolerate hydrostatic pressures greater than those found in its natural bathymetric range. It is discussed that a lack of physiological cold tolerance and ecological factors, such as the need to find gastropod shells for protection, are the principal restrictions maintaining P. cuanensis to a maximumdepth of approximately 250 m. We hypothesize that temperate shallow-water invertebrates could indeed be able to penetrate greater depths as continental shelf waters warm up in the course of global climate change. © 2010 Elsevier B.V. All rights reserved.  |l eng 
536 |a Detalles de la financiación: This work was supported by a grant ( Abyss2100 ) from the Total Foundation to Sven Thatje, and a Royal Society visiting scientist grant to Javier A. Calcagno. The authors wish to thank Antony Jensen for his help in obtaining the hermit crabs. [SS] 
593 |a National Oceanography Centre, School of Ocean and Earth Science, University of Southampton, Southampton, European Way, SO14 3ZH, Southampton, United Kingdom 
593 |a Departamento de Ecología, Genética y Evolución, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires - CONICET, Buenos Aires, Argentina 
690 1 0 |a ANOMURA 
690 1 0 |a BIOGEOGRAPHY 
690 1 0 |a CRUSTACEA 
690 1 0 |a DEEP SEA 
690 1 0 |a EVOLUTION 
690 1 0 |a PHYSIOLOGY 
690 1 0 |a BEHAVIORAL RESPONSE 
690 1 0 |a BIOGEOGRAPHY 
690 1 0 |a CLIMATE CHANGE 
690 1 0 |a CRAB 
690 1 0 |a DEEP SEA 
690 1 0 |a EVOLUTIONARY BIOLOGY 
690 1 0 |a HYDROSTATIC PRESSURE 
690 1 0 |a PHYSIOLOGICAL RESPONSE 
690 1 0 |a RESPIRATION 
690 1 0 |a SHALLOW WATER 
690 1 0 |a TEMPERATURE EFFECT 
690 1 0 |a ANOMURA 
690 1 0 |a CRUSTACEA 
690 1 0 |a DECAPODA (CRUSTACEA) 
690 1 0 |a GASTROPODA 
690 1 0 |a INVERTEBRATA 
690 1 0 |a LITHODIDAE 
690 1 0 |a PAGURIDAE 
690 1 0 |a PAGURUS CUANENSIS 
700 1 |a Casburn, L. 
700 1 |a Calcagno, J.A. 
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