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Acute thermal stressor increases glucocorticoid response but minimizes testosterone and locomotor performance in the cane toad (Rhinella marina)

机译:急性热应激源增加了糖皮质激素的反应,但使甘蔗蟾蜍(Rhinella marina)的睾丸激素和运动能力降至最低

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摘要

Climatic warming is a global problem and acute thermal stressor in particular could be considered as a major stressor for wildlife. Cane toads (Rhinella marina) have expanded their range into warmer regions of Australia and they provide a suitable model species to study the sub-lethal impacts of thermal stressor on the endocrine physiology of amphibians. Presently, there is no information to show that exposure to an acute thermal stressor could initiate a physiological stress (glucocorticoid) response and secondly, the possible effects on reproductive hormones and performance. Answering these questions is important for understanding the impacts of extreme temperature on amphibians. In this study, we experimented on cane toads from Queensland, Australia by acclimating them to mildly warm temperature (25oC) and then exposing to acute temperature treatments of 30o, 35o or 40oC (hypothetical acute thermal stressors). We measured acute changes in the stress hormone corticosterone and the reproductive hormone testosterone using standard capture and handling protocol and quantified the metabolites of both hormones non-invasively using urinary enzyme-immunoassays. Furthermore, we measured performance trait (i.e. righting response score) in the control acclimated and the three treatment groups. Corticosterone stress responses increased in all toads during exposure to an acute thermal stressor. Furthermore, exposure to a thermal stressor also decreased testosterone levels in all toads. The duration of the righting response (seconds) was longer for toads that were exposed to 40oC than to 30o, 35o or 25oC. The increased corticosterone stress response with increased intensity of the acute thermal stressor suggests that the toads perceived this treatment as a stressor. Furthermore, the results also highlight a potential trade-off with performance and reproductive hormones. Ultimately, exposure acute thermal stressors due to climatic variability could impact amphibians at multiple ecophysiological levels through impacts on endocrine physiology, performance and potentially fitness traits (e.g. reproductive output).
机译:气候变暖是一个全球性问题,尤其是急性热应激源可被视为野生动植物的主要应激源。甘蔗蟾蜍(Rhinella marina)已将其范围扩大到澳大利亚的温暖地区,它们为研究热应激对两栖动物内分泌生理的亚致死影响提供了合适的模型物种。目前,尚无资料表明暴露于急性热应激源可引发生理应激(糖皮质激素)反应,其次,可能对生殖激素和性能产生影响。回答这些问题对于理解极端温度对两栖动物的影响非常重要。在这项研究中,我们在澳大利亚昆士兰州的甘蔗蟾蜍上进行了实验,方法是使它们适应温和的温度(25oC),然后暴露于30o,35o或40oC的急性温度处理下(假设的急性热应激源)。我们使用标准的捕获和处理方案测量了应激激素皮质酮和生殖激素睾丸激素的急性变化,并通过尿酶免疫测定非侵入性地定量了两种激素的代谢产物。此外,我们在适应的对照组和三个治疗组中测量了性能特征(即扶正反应评分)。暴露于急性热应激源下,所有蟾蜍的皮质酮应激反应均增加。此外,暴露于热应激源也降低了所有蟾蜍的睾丸激素水平。暴露于40oC的蟾蜍的扶正响应时间(秒)长于30o,35o或25oC。随着急性热应激源强度的增加,皮质酮应激反应的增加表明蟾蜍认为这种治疗是应激源。此外,结果还强调了在性能和生殖激素之间的潜在权衡。归根结底,由于气候变化而暴露的急性热应激源可通过影响内分泌生理,性能和潜在的适应性状(例如生殖输出),在多个生态生理水平上影响两栖动物。

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