Thermal tolerance and locomotor activity of blue swimmer crab Portunus pelagicus instar reared at different temperatures
Tóm tắt
Từ khóa
Tài liệu tham khảo
Abol-Munafi, 2017, Digestive enzyme profiles from foregut contents of blue swimming crab, Portunus pelagicus from Straits of Johor, Malaysia, J. Assoc. Arab Univ. Basic Appl. Sci., 120
Ali, 2000, Oxygen consumption of the freshwater crab Elamenopsis kempi (Chopra and Das, 1930) from the Garmat-Ali river, Iraq, Sci. Mar., 64, 311, 10.3989/scimar.2000.64n3311
Anger, 1991, Effects of temperature and salinity on the larval development of the Chinese mitten crab Eriocheir sinensis (Decapoda: grapsidae), Mar. Ecol. Prog. Ser., 72, 103, 10.3354/meps072103
Azra, 2015, Larval culture and rearing techniques of commercially important crab, Portunus pelagicus (Linnaeus, 1758): present status and future prospects, Songklanakarin J. Sci. Technol., 37, 135
Azra, 2016, A review of maturation diets for mud crab genus Scylla broodstock: present research, problems and future perspective, Saudi J. Biol. Sci., 23, 257, 10.1016/j.sjbs.2015.03.011
Bates, 2013, Geographical range, heat tolerance and invasion success in aquatic species, Proc. Biol. Sci., 280, 20131958
Bax, 2003, Marine invasive alien species: a threat to global biodiversity, Mar. Policy, 27, 313, 10.1016/S0308-597X(03)00041-1
Bennett, 1990, Thermal dependence of locomotor capacity, Am. J. Physiol., 259, 253
Brattstrom, 1968, Thermal acclimation in Anuran amphibians as a function of latitude and altitude, Comp. Biochem Physiol., 24, 93, 10.1016/0010-406X(68)90961-4
Carter, 1991, Effects of temperature on tilt evoked swimming in the crabs Carcinus and Macropipus, J. Therm. Biol., 16, 367, 10.1016/0306-4565(91)90065-A
Cattaert, 2017, Control of locomotion in crustaceans, 1
Claussen, 1977, Thermal acclimation in ambystomatic salamanders, Comp. Biochem. Physiol., 58A, 333, 10.1016/0300-9629(77)90150-5
Costello, 2015, Biological and ecological traits of marine species, PeerJ, 3, e1201, 10.7717/peerj.1201
Cowles, 1944, A preliminary study of the thermal requirements of desert reptiles, Bull. Am. Mus. Nat. Hist., 83, 261
Cuculescu, 1998, Thermal tolerance of two species of marine crab, Cancer pagurus and Carcinus maenas, J. Therm. Biol., 23, 107, 10.1016/S0306-4565(98)00008-4
Cumillaf, 2016, Thermal biology of the sub-polar–temperate estuarine crab Hemigrapsus crenulatus (Crustacea: decapoda: Varunidae), Biol. Open, 5, 220, 10.1242/bio.013516
Curtis, 2012, Salinity and thermal preference of Dungeness crabs in the lab and in the field: effects of food availability and starvation, J. Exp. Mar. Biol. Ecol., 413, 113, 10.1016/j.jembe.2011.12.005
Dabruzzi, 2017, Thermal ecology of red lionfish Pterois volitans from southeast Sulawesi, Indonesia, with comparisons to other Scorpaenidae, Aquat. Biol., 26, 1, 10.3354/ab00668
Dalvi, 2009, Thermal tolerance and oxygen consumption rates of the catfish Horabagrus brachysoma (Günther) acclimated to different temperatures, Aquaculture, 295, 116, 10.1016/j.aquaculture.2009.06.034
Darnell, 2015, Thermal ecology of the fiddler crab Uca panacea: thermal constrain and organismal responses, J. Therm. Biol., 52, 157, 10.1016/j.jtherbio.2015.06.004
Dulger, 2012, Thermal tolerance of European sea bass (Dicentrarchus labrax) juveniles acclimated to three temperature levels, J. Therm. Biol., 37, 79, 10.1016/j.jtherbio.2011.11.003
Eme, 2009, Critical thermal tolerance polygons of tropical marine fishes from Sulawesi, Indonesia, J. Therm. Biol., 34, 220, 10.1016/j.jtherbio.2009.02.005
Ford, 2005, Temperature tolerance in the goldfish, Carassius auratus. J. Therm. Biol., 30, 147, 10.1016/j.jtherbio.2004.09.004
Forward, 1990, Behavioral responses of crustacean larvae to rates oftemperature change, Biol. Bull., 178, 195, 10.2307/1541819
Fowler, 2011, Temperature and salinity tolerances of Stage 1 zoeae predict possible range expansion of an introduced portunid crab, Charybdis japonica, in New Zealand, Biol. Invansion, 13, 691, 10.1007/s10530-010-9860-2
Fry, 1942, Lethal limits of temperature for young goldfish, Rev. Can. Biol., 1, 50
Hungria, 2017, Global status of production and commercialization of soft-shell crabs, Aquac. Int., 25, 2213, 10.1007/s10499-017-0183-5
Hutchison, 1961, Critical thermal maxima in salamanders, Physiol. Zool., 34, 92, 10.1086/physzool.34.2.30152688
Iftikar, 2010, Thermal limits of portunid crab heart mitochondria: could more thermo-stable mitochondria advantage invasive species?, J. Exp. Mar. Biol. Ecol., 395, 232, 10.1016/j.jembe.2010.09.005
Jian, 2003, Temperature and salinity tolerance of yellowfin sea bream, Acanthopagrus latus, at different salinity and temperature levels, Aquac. Res., 34, 175, 10.1046/j.1365-2109.2003.00800.x
Kelly, 2014, The role thermal physiology plays in species invasion, Conserv Physiol., 10, cou045, 10.1093/conphys/cou045
Kir, 2017, Thermal tolerance and preferred temperature range of juvenile meagre acclimated to four temperatures, J. Therm. Biol., 65, 125, 10.1016/j.jtherbio.2017.02.018
Kumlu, 2010, Thermal tolerance of Litopenaeus vannamei (Crustacea: penaeidae) acclimated to four temperatures, J. Therm. Biol., 35, 305, 10.1016/j.jtherbio.2010.06.009
Li, 2015, Temperature-dependent physiological and biochemical responses of the marine medaka Oryzias melastigma with consideration of both low and high thermal extremes, J. Therm. Biol., 54, 98, 10.1016/j.jtherbio.2014.09.011
Lutterschmidt, 1997, The critical thermal maximum: history and critique, Can. J. Zool., 75, 1561, 10.1139/z97-783
Manush, 2004, Thermal tolerance and oxygen consumption of Macrobrachium rosenbergii acclimated to three temperatures, J. Therm. Biol., 29, 15, 10.1016/j.jtherbio.2003.11.005
Mat, 2017, Influence of temperature on daily locomotoractivity in the crab Uca pugilator, PLosOne, 12, e0175403, 10.1371/journal.pone.0175403
Meyerson, 2007, Invasive alien species in an era of globalization, Front. Ecol. Environ., 5, 199, 10.1890/1540-9295(2007)5[199:IASIAE]2.0.CO;2
Miller, 2012, Neural thermal performance in porcelain crabs, genus Petrolisthes, Physiol. Biochem Zool., 85, 29, 10.1086/663633
Miller, 2013, Differential thermal tolerance and energetic trajectories during ontogenyin porcelain crabs, genus Petrolisthes, J. Therm. Biol., 38, 79, 10.1016/j.jtherbio.2012.11.005
Monica, 2002, Temperature tolerance polygon of Poecilia sphenops Valenciennes (Pisces: Poeciliidae), J. Therm. Biol., 27, 1, 10.1016/S0306-4565(01)00008-0
Ober, 2017, Ecological differences influence the thermal sensitivity of swimming performance in two co-occurring mysid shrimp species with climate change implications, J. Therm. Biol., 64, 26, 10.1016/j.jtherbio.2016.11.012
Padilla-Ramirez, 2015, The effects of thermal acclimation on the behaviour, thermal tolerance, and respiratory metabolism in a crab inhabiting a wide range of thermal habitats (Cancer antennarius Stimpson, 1856, the red shore crab), Mar. Freshw. Behav. Physiol., 48, 89, 10.1080/10236244.2015.1019212
Paschke, 2013, Relationship between age and thermoregulatory behaviour of Lithodes santolla (Molina, 1782) (Decapoda, Lithodidae) juveniles, J. Exp. Mar. Biol. Ecol., 448, 141, 10.1016/j.jembe.2013.06.018
Peter, A., 2011. Solomon Coder (Version Beta: 17.03.22): A simple solution for behaviour coding. 〈https://solomoncoder.com/〉.
Peck, 2013, Juveniles are more resistant to warming than adults in 4 species of Antarctic marine invertebrates, PLos One, 8, e66033, 10.1371/journal.pone.0066033
Portner, 2010, Oxygen-and capacity –limitation of thermal tolerance: a matrix for integrating climate-related stressor effects in marine ecosystems, J. Exp. Biol., 213, 881, 10.1242/jeb.037523
Portner, 2007, Climate change affects marine fishes through the oxygen limitation of thermal tolerance, Science, 315, 95, 10.1126/science.1135471
Qari, 2014, Thermal tolerance of the marine crab, Portunus pelagicus (Brachyura, Portunidae), Crustaceana, 87, 827, 10.1163/15685403-00003323
Regil, 2015, Thermal biology of prey (melongena corona bispinosa, Strombus pugilis,Callinectes similis, Libinia dubia) and predators (Ocyurus chrysurus, Centropomus undecimalis) of Octopus maya from the Yucatan Peninsula, J. Therm. Biol., 53, 151, 10.1016/j.jtherbio.2015.11.001
Reynolds, 1979, Behavioral thermoregulation and the “Final Preferendum” paradigm, Am. Zool., 19, 211, 10.1093/icb/19.1.211
Rodriguez-Fuentes, 2017, Ecophysiological biomarkers defining the thermal biology of the Caribbean lobster Panulirus argus, Ecol. Indic., 78, 192, 10.1016/j.ecolind.2017.03.011
Seibel, 2007, The rate of metabolism in marine animals: environmental constraints, ecological demands and energetic opportunities, Philos. Trans. R. Soc. B., 362, 2061, 10.1098/rstb.2007.2101
Stillman, 2002, Causes and consequences of thermal tolerance limits in rocky intertidal porcelain crabs, genus Petrolisthes, Integr. Comp. Biol., 42, 790, 10.1093/icb/42.4.790
Stillman, 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, 10.1086/316738
Storch, 2011, Thermal tolerance of larval stages of the Chilean kelp crab Taliepus dentatus, Mar. Ecol. Prog. Ser., 429, 157, 10.3354/meps09059
Sumpton, 1990, Effect of temperature on the emergence, activity and feeding of male and female sand Crabs (Portunus pelagicus), Aust. J. Mar. Freshw. Res., 41, 545, 10.1071/MF9900545
Tavares, 2017, Systems and techniques used in the culture of soft-shell swimming crabs, Rev. Aquac., 1
Valere-Rivet, 2017, Thermal tolerance of the hermit crab Pagurus samuelis subjected to shallow burial events, Crustace. Res., 46, 65, 10.18353/crustacea.46.0_65
Vinagre, 2013, Critical thermal maxima of common rocky intertidal fish and shrimps - A preliminary assessment, J. Sea Res., 81, 10, 10.1016/j.seares.2013.03.011
Vinagre, 2015, Effect of warming rate on the critical thermal maxima of crabs, shrimp and fish, J. Therm. Biol., 47, 19, 10.1016/j.jtherbio.2014.10.012
Webley, 2007, Vertical movement of mud crab megalopae (Scylla serrata) in response to light: doing it differently down under, J. Exp. Mar. Biol. Ecol., 341, 196, 10.1016/j.jembe.2006.10.001
Weinstein, 1998, Effects of temperature and water loss on terrestrial locomotor performance in land crabs: integrating laboratory and field studies, Integr. Comp. Biol., 38, 518
