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灵活性代价高昂:变温动物季节性表型转变带来的潜在生理损伤

Flexibility Is Costly: Hidden Physiological Damage From Seasonal Phenotypic Transitions in Heterothermic Species.

作者信息

Landes Julie, Pavard Samuel, Henry Pierre-Yves, Terrien Jérémy

机构信息

Unité Mécanismes Adaptatifs et Evolution (MECADEV), UMR 7179, CNRS, Muséum National d'Histoire Naturelle, Brunoy, France.

Unité Eco-anthropologie (EA), Muséum National d'Histoire Naturelle, CNRS, Université de Paris, Paris, France.

出版信息

Front Physiol. 2020 Aug 12;11:985. doi: 10.3389/fphys.2020.00985. eCollection 2020.

Abstract

Heterothermy allows organisms to cope with fluctuating environmental conditions. The use of regulated hypometabolism allows seasonal heterothermic species to cope with annual resource shortages and thus to maximize survival during the unfavorable season. This comes with deep physiological remodeling at each seasonal transition to allow the organism to adjust to the changing environment. In the wild, this adaptation is highly beneficial and largely overcomes potential costs. However, researchers recently proposed that it might also generate both ecological and physiological costs for the organism. Here, we propose new perspectives to be considered when analyzing adaptation to seasonality, in particular considering these costs. We propose a list of putative costs, including DNA damage, inflammatory response to fat load, brain and cognitive defects, digestive malfunction and immunodeficiency, that should receive more attention in future research on physiological seasonality. These costs may only be marginal at each transition event but accumulate over time and therefore emerge with age. In this context, studies in captivity, where we have access to aging individuals with limited extrinsic mortality (e.g., predation), could be highly valuable to experimentally assess the costs of physiological flexibility. Finally, we offer new perspectives, which should be included in demographic models, on how the adaptive value of physiological flexibility could be altered in the future in the context of global warming.

摘要

异温性使生物体能够应对波动的环境条件。利用调节性低代谢使季节性异温物种能够应对年度资源短缺,从而在不利季节最大限度地提高生存率。这伴随着在每个季节转换时深刻的生理重塑,以使生物体适应不断变化的环境。在野外,这种适应非常有益,并且在很大程度上克服了潜在的代价。然而,研究人员最近提出,这也可能给生物体带来生态和生理代价。在这里,我们提出在分析对季节性的适应时需要考虑的新观点,特别是考虑这些代价。我们提出了一系列假定的代价,包括DNA损伤、对脂肪负荷的炎症反应、大脑和认知缺陷、消化功能障碍和免疫缺陷,这些在未来关于生理季节性的研究中应受到更多关注。这些代价在每个转换事件中可能只是微不足道的,但会随着时间积累,因此会随着年龄增长而显现出来。在这种情况下,在圈养环境中的研究可能非常有价值,因为在圈养环境中我们可以接触到外部死亡率有限(如捕食)的老龄个体,从而通过实验评估生理灵活性的代价。最后,我们提供了新的观点,即生理灵活性的适应价值在全球变暖的背景下未来可能如何改变,这些观点应纳入人口统计学模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a564/7434983/9c887e067a01/fphys-11-00985-g001.jpg

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