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华丽穴居蛙蝌蚪对温度和UV-B不敏感的特性:一种临时水塘特化物种。

Temperature and UV-B-insensitive performance in tadpoles of the ornate burrowing frog: an ephemeral pond specialist.

作者信息

Kern Pippa, Cramp Rebecca L, Franklin Craig E

机构信息

School of Biological Sciences, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

J Exp Biol. 2014 Apr 15;217(Pt 8):1246-52. doi: 10.1242/jeb.097006. Epub 2013 Dec 20.

Abstract

Animals may overcome the challenges of temperature instability through behavioural and physiological mechanisms in response to short- and long-term temperature changes. When ectotherms face the challenge of large diel temperature fluctuations, one strategy may be to reduce the thermal sensitivity of key traits in order to maintain performance across the range of temperatures experienced. Additional stressors may limit the ability of animals to respond to these thermally challenging environments through changes to energy partitioning or interactive effects. Ornate burrowing frog (Platyplectrum ornatum) tadpoles develop in shallow ephemeral pools that experience high diel thermal variability (>20°C) and can be exposed to high levels of UV-B radiation. Here, we investigated how development in fluctuating versus stable temperature conditions in the presence of high or low UV-B radiation influences thermal tolerance and thermal sensitivity of performance traits of P. ornatum tadpoles. Tadpoles developed in either stable (24°C) or fluctuating temperatures (18-32°C) under high or low UV-B conditions. Tadpoles were tested for upper critical thermal limits, thermal dependence of resting metabolic rate and maximum burst swimming performance. We hypothesised that developmental responses to thermal fluctuations would increase thermal tolerance and reduce thermal dependence of physiological traits, and that trade-offs in the allocation of metabolic resources towards repairing UV-B-induced damage may limit the ability to maintain performance over the full range of temperatures experienced. We found that P. ornatum tadpoles were thermally insensitive for both burst swimming performance, across the range of temperatures tested, and resting metabolic rate at high temperatures independent of developmental conditions. Maintenance of performance led to a trade-off for growth under fluctuating temperatures and UV-B exposure. Temperature treatment and UV-B exposure had an interactive effect on upper critical thermal limits possibly due to the upregulation of the cellular stress response. Thermal independence of key traits may allow P. ornatum tadpoles to maintain performance in the thermal variability inherent in their environment.

摘要

动物可以通过行为和生理机制来应对短期和长期的温度变化,从而克服温度不稳定带来的挑战。当变温动物面临昼夜温差大的挑战时,一种策略可能是降低关键性状的热敏感性,以便在经历的温度范围内维持性能。额外的应激源可能会通过改变能量分配或相互作用效应来限制动物对这些热挑战性环境做出反应的能力。华丽穴蛙(Platyplectrum ornatum)蝌蚪在浅的临时水塘中发育,这些水塘经历高的昼夜热变化(>20°C),并且可能暴露于高水平的UV-B辐射。在这里,我们研究了在高或低UV-B辐射存在的情况下,在波动温度与稳定温度条件下发育如何影响华丽穴蛙蝌蚪性能性状的热耐受性和热敏感性。蝌蚪在高或低UV-B条件下,在稳定(24°C)或波动温度(18-32°C)中发育。对蝌蚪进行了上临界热极限、静息代谢率的热依赖性和最大爆发游泳性能的测试。我们假设,对热波动的发育反应会增加热耐受性并降低生理性状的热依赖性,并且在分配代谢资源以修复UV-B诱导的损伤方面的权衡可能会限制在经历的整个温度范围内维持性能的能力。我们发现,华丽穴蛙蝌蚪在测试的温度范围内,对于爆发游泳性能以及高温下的静息代谢率均对热不敏感,且与发育条件无关。在波动温度和UV-B暴露下,维持性能导致了生长方面的权衡。温度处理和UV-B暴露对上临界热极限有交互作用,这可能是由于细胞应激反应的上调。关键性状的热独立性可能使华丽穴蛙蝌蚪在其环境固有的热变化中维持性能。

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