Invading new climates at what cost? Ontogenetic differences in the thermal dependence of metabolic rate in an invasive amphibian

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Pablo Padilla , Anthony Herrel , Mathieu Denoël
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Abstract

Global warming can either promote or constrain the invasive potential of alien species. In ectotherm invaders that exhibit a complex life cycle, success is inherently dependent on the capacity of each developmental stage to cope with environmental change. This is particularly relevant for invasive anurans, which disperse on land while requiring water for reproduction. However, it remains unknown how the different life stages respond in terms of energy expenditure under different climate change scenarios. We here quantified the oxygen uptake of frogs at rest (a proxy of the standard metabolic rate) in the aquatic phase (at the tadpole and climax, i.e. during metamorphosis, stages) and in the terrestrial phase (metamorphosed stage) at three environmental temperatures. To do so, we used marsh frogs (Pelophylax ridibundus), an amphibian with the largest invasive range within the palearctic realm and for which their adaptation to global warming might be key to their invasion success. Beyond an increase of metabolic rate with temperature, our data show variation in thermal adaptation across life stages and a higher metabolic cost during metamorphosis. These results suggest that the cost to shift habitat and face changes in temperature may be a constraint on the invasive potential of species with a complex life cycle which may be particularly vulnerable during metamorphosis.

入侵新气候的代价是什么?入侵两栖动物代谢率热依赖性的个体发育差异
全球变暖既可能促进也可能限制外来物种的入侵潜力。外来入侵物种的生命周期复杂,其成功与否取决于每个发育阶段应对环境变化的能力。这一点与入侵无尾类尤其相关,它们在陆地上散布,同时需要水进行繁殖。然而,在不同的气候变化情景下,不同生命阶段的能量消耗是如何反应的,目前仍是未知数。在此,我们对三种环境温度下蛙类在水生阶段(蝌蚪期和高潮期,即变态期)和陆生阶段(变态期)的静态摄氧量(标准代谢率的代表)进行了量化。为此,我们使用了沼泽蛙(Pelophylax ridibundus),这种两栖动物在古北界的入侵范围最大,它们对全球变暖的适应可能是其入侵成功的关键。除了新陈代谢率随温度升高而增加外,我们的数据还显示了不同生命阶段的热适应性差异,以及在变态过程中较高的新陈代谢成本。这些结果表明,转移栖息地和面对温度变化的成本可能会制约具有复杂生命周期的物种的入侵潜力,这些物种在变态过程中可能特别脆弱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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