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Hormonal and metabolic responses to upper temperature extremes in divergent life-history ecotypes of a garter snake

机译:袜带蛇的不同生活史生态型对最高温度的激素和代谢反应

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摘要

Extreme temperatures constrain organismal physiology and impose both acute and chronic effects. Additionally, temperature-induced hormone-mediated stress response pathways and energetic trade-offs are important drivers of life-history variation. This study employs an integrative approach to quantify acute physiological responses to high temperatures in divergent life-history ecotypes of the western terrestrial garter snake (Thamnophis elegans). Using wild-caught animals, we measured oxygen consumption rate and physiological markers of hormonal stress response, energy availability and anaerobic respiration in blood plasma across five ecologically relevant temperatures (24, 28, 32, 35 and 38°C; 3 h exposure). Corticosterone, insulin and glucose concentrations all increased with temperature, but with different thermal response curves, suggesting that high temperatures differently affect energy-regulation pathways. Additionally, oxygen consumption rate increased without plateau and lactate concentration did not increase with temperature, challenging the recent hypothesis that oxygen limitation sets upper thermal tolerance limits. Finally, animals had similar physiological thermal responses to high-temperature exposure regardless of genetic background, suggesting that local adaptation has not resulted in fixed differences between ecotypes. Together, these results identify some of the mechanisms by which higher temperatures alter hormonal-mediated energy balance in reptiles and potential limits to the flexibility of this response.
机译:极端温度会限制机体生理,并施加急性和慢性影响。此外,温度诱导的激素介导的应激反应途径和能量折衷是生活史变化的重要驱动力。这项研究采用一种综合方法来量化西部陆地袜带蛇(Thamnophis elegans)在不同的生命历史生态型中对高温的急性生理反应。我们使用野外捕获的动物,在五个与生态相关的温度(24、28、32、35和38°C;暴露3 h)下,测量了耗氧率和血浆中激素应激反应,能量可用性和厌氧呼吸的生理指标。皮质酮,胰岛素和葡萄糖的浓度均随温度升高而增加,但具有不同的热响应曲线,表明高温对能量调节途径的影响不同。另外,耗氧率没有平台上升,而乳酸盐浓度没有随温度增加,这挑战了最近的假设,即氧气限制设定了耐热极限上限。最后,无论遗传背景如何,动物对高温暴露都有相似的生理热反应,这表明局部适应并未导致生态型之间的固定差异。在一起,这些结果确定了高温改变爬行动物中激素介导的能量平衡的某些机制,以及这种反应的灵活性的潜在限制。

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