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澳大利亚热带蛙类的体温与水分蒸发损失抗性

Body temperature and resistance to evaporative water loss in tropical Australian frogs.

作者信息

Tracy Christopher R, Christian Keith A, Betts Gregory, Tracy C Richard

机构信息

School of Science, Charles Darwin University, Darwin, NT 0909, Australia.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2008 Jun;150(2):102-8. doi: 10.1016/j.cbpa.2006.04.031. Epub 2006 May 6.

Abstract

Although the skin of most amphibians measured to date offers no resistance to evaporative water loss (EWL), some species, primarily arboreal frogs, produce skin secretions that increase resistance to EWL. At high air temperatures, it may be advantageous for amphibians to increase EWL as a means to decrease body temperature. In Australian hylid frogs, most species do not decrease their resistance at high air temperature, but some species with moderate resistance (at moderate air temperatures) gradually decrease resistance with increasing air temperature, and some species with high resistance (at moderate air temperatures) abruptly decrease resistance at high air temperatures. Lower skin resistance at high air temperatures decreases the time to desiccation, but the lower body temperatures allow the species to avoid their critical thermal maximum (CT(Max)) body temperatures. The body temperatures of species with low to moderate resistances to EWL that do not adjust resistance at high air temperatures do not warm to their CT(Max), although for some species, this is because they have high CT(Max) values. As has been reported previously for resistance to EWL generally, the response pattern of change of EWL at high air temperatures has apparently evolved independently among Australian hylids. The mechanisms involved in causing resistance and changes in resistance are unknown.

摘要

尽管迄今为止所测量的大多数两栖动物的皮肤对蒸发失水(EWL)没有抵抗力,但一些物种,主要是树蛙,会产生增加对EWL抵抗力的皮肤分泌物。在高气温下,两栖动物增加EWL作为降低体温的一种方式可能是有利的。在澳大利亚雨蛙中,大多数物种在高气温下不会降低其抵抗力,但一些具有中等抵抗力(在中等气温下)的物种会随着气温升高而逐渐降低抵抗力,而一些具有高抵抗力(在中等气温下)的物种在高气温下会突然降低抵抗力。在高气温下较低的皮肤抵抗力会缩短干燥时间,但较低的体温使这些物种能够避免其临界热最大值(CT(Max))体温。对EWL具有低到中等抵抗力且在高气温下不调节抵抗力的物种的体温不会升高到其CT(Max),尽管对于一些物种来说,这是因为它们具有较高的CT(Max)值。正如之前关于对EWL抵抗力的普遍报道一样,澳大利亚雨蛙在高气温下EWL变化的反应模式显然是独立进化的。导致抵抗力和抵抗力变化的机制尚不清楚。

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