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          • 技(ji)術文章ARTICLE

            您當前(qian)的(de)位置(zhi):首頁 > 技(ji)術(shu)文章 > 易科泰兩爬(pa)動(dong)物(wu)能(neng)量代(dai)謝(xie)測(ce)量技術(shu)部分(fen)參(can)考文獻(xian)目錄(lu)

            易科泰兩爬(pa)動(dong)物(wu)能(neng)量代(dai)謝(xie)測(ce)量技術(shu)部分(fen)參(can)考文獻(xian)目錄(lu)

            發布(bu)時間(jian): 2024-09-26  點(dian)擊(ji)次(ci)數: 1116次(ci)

            兩爬(pa)類動(dong)物(wu)的(de)能(neng)量代(dai)謝(xie)研(yan)究(jiu)對(dui)於(yu)理(li)解(jie)它們(men)的生(sheng)存(cun)策(ce)略(lve)、適應環境(jing)變(bian)化的能(neng)力以(yi)及(ji)在(zai)生(sheng)態(tai)系(xi)統中的(de)角色(se)至關(guan)重(zhong)要(yao)。通(tong)過(guo)測量(liang)這(zhe)些(xie)動(dong)物(wu)在(zai)不同(tong)生(sheng)態(tai)條件下的耗(hao)氧(yang)量(liang)(VO2),科學(xue)家(jia)們(men)預測和(he)解(jie)釋它們(men)對氣(qi)候變(bian)化、棲息(xi)地(di)破(po)壞(huai)和(he)其(qi)他(ta)環境(jing)壓(ya)力(li)的(de)反(fan)應,從而為保(bao)護(hu)生(sheng)物(wu)多(duo)樣性和(he)維(wei)持生(sheng)態(tai)平(ping)衡提供(gong)重(zhong)要(yao)的(de)數(shu)據(ju)支(zhi)持。此(ci)外,這些(xie)研究(jiu)還(hai)有(you)助(zhu)於揭示代(dai)謝(xie)過(guo)程的生(sheng)物(wu)學(xue)基(ji)礎(chu),為比(bi)較(jiao)生(sheng)理(li)學(xue)提供(gong)見(jian)解(jie),並可(ke)能(neng)對人(ren)類醫學(xue)和(he)保(bao)健有所啟發。

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            Baškiera, Senka, and Lumír Gvoždík. "Repeatability and heritability of resting metabolic rate in a long-lived amphibian." Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology 253 (2021): 110858.

            Burger I J, Carter E T, Magner L M, et al. Assessing hybrid vigour using the thermal sensitivity of physiological trade‐offs in tiger salamanders[J]. Functional Ecology, 2024, 38(1): 143-152.

            Capparelli M V , Bordon I C , Araujo G , et al. Combined effects of temperature and copper on oxygen consumption and antioxidant responses in the mudflat fiddler crab Minuca rapax (Brachyura, Ocypodidae)[J]. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 2019, 223:35-41.

            Dubiner S, Jamison S, Meiri S, et al. Squamate metabolic rates decrease in winter beyond the effect of temperature[J]. Journal of Animal Ecology, 2023, 92(11): 2163-2174.

            Faria, S. C., Bianchini, A., Lauer, M. M., Zimbardi, A. L. R. L., Tapella, F., Romero, M. C., & McNamara, J. C. (2020). Living on the Edge: Physiological and Kinetic Trade-Offs Shape Thermal Tolerance in Intertidal Crabs From Tropical to Sub-Antarctic South America. Frontiers in Physiology, 11.

            Gvozdik, Lumir, Kratochvil, et al. An energetic perspective on tissue regeneration: The costs of tail autotomy in growing geckos[J]. Comparative biochemistry and physiology, Part A. Molecular and integrative physiology, 2017.

            Jiang ZW, Ma L, Tao SA, Wenda C, Cheng C, Wu DY, Du WG. Analysis of resting status reveals distinct elevational variation in metabolisms of lizards. Ecology. 2024 Sep 10:e4414. doi: 10.1002/ecy.4414. Epub ahead of print. PMID: 39256909.

            Kouyoumdjian L , Gangloff E J , et al. Transplanting gravid lizards to high elevation alters maternal and embryonic oxygen physiology, but not reproductive success or hatchling phenotype[J]. Journal of Experimental Biology, 2019, 222(14):jeb.206839.

            Lardies M A , Munoz J L , Paschke K A , et al. Latitudinal variation in the aerial/aquatic ratio of oxygen consumption of a supratidal high rocky-shore crab[J]. Marine Ecology, 2011, 32(1):42-51.

            Louppe, V., Courant, J., Videlier, M., & Herrel, A. (2018). Differences in standard metabolic rate at the range edge versus the center of an expanding invasive population of Xenopus laevis in the West of France. Journal of Zoology, 305, 163-172.

            Messerman, Arianne F., and Manuel Leal. "Inter-and intraspecific variation in juvenile metabolism and water loss among five biphasic amphibian species." Oecologia 194.3 (2020): 371-382.

            Messerman, Arianne F., and Manuel Leal. "The contributions of individual traits to survival among terrestrial juvenile pondbreeding salamanders." Functional Ecology 36.3 (2022): 516-525.

            Padilla P, Herrel A, Denoël M. Invading new climates at what cost? Ontogenetic differences in the thermal dependence of metabolic rate in an invasive amphibian[J]. Journal of Thermal Biology, 2024, 121: 103836.  

            Riddell, E.A., Roback, E.Y., Wells, C.E.et al.Thermal cues drive plasticity of desiccation resistance in montane salamanders with implications for climate change. Nat Commun 10,4091 (2019).

            Senzano L M, Andrade D V. Temperature and dehydration effects on metabolism, water uptake and the partitioning between respiratory and cutaneous evaporative water loss in a terrestrial toad[J]. Journal of Experimental Biology, 2018, 221(24): jeb188482.


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