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甲状腺激素对变温动物热适应的调节:生理机制和生态进化意义。

Thyroid hormone regulation of thermal acclimation in ectotherms: Physiological mechanisms and ecoevolutionary implications.

机构信息

Department of Biology, Queen's University, Kingston, Ontario, K7L 3N6, Canada.

出版信息

Mol Cell Endocrinol. 2021 Jun 15;530:111285. doi: 10.1016/j.mce.2021.111285. Epub 2021 Apr 20.

Abstract

The pathways that regulate adaptive thermal plasticity in ectothermic vertebrates have received little attention relative to those in birds and mammals. However, there is increasing evidence that thyroid hormone represents a critical regulator of thermal plasticity in both ectothermic and endothermic vertebrates. In this review, I summarize the evidence for thyroid hormone-mediated thermal compensation responses in ectothermic vertebrates, with specific focus on effects on the whole animal, skeletal muscle, and cardiac muscle. Interestingly, these effects can differ wildly between focal tissues and species. I move on to discuss what the role of thyroid hormone in ectotherm thermal plasticity can reveal about stressor interactions and central vs. peripheral levels of thyroid hormone regulation. Lastly, I focus on the conserved nature of thyroid hormone signaling in animal thermal responses, with specific reference to the ectotherm → endotherm spectrum. I use this framework to highlight research avenues that will further resolve the evolutionary trajectory of thyroid hormone actions across animals. I hope to emphasize what thyroid hormone-mediated cold acclimation in a 3 cm fish can contribute to ongoing debates surrounding the impacts of stressor interactions, the potential costs of plasticity, the evolution of endothermy, and the impacts of global change.

摘要

与鸟类和哺乳动物相比,调节变温脊椎动物适应热塑性的途径受到的关注较少。然而,越来越多的证据表明,甲状腺激素是变温动物和恒温动物热塑性的关键调节因子。在这篇综述中,我总结了甲状腺激素介导的变温脊椎动物热补偿反应的证据,特别关注对整个动物、骨骼肌和心肌的影响。有趣的是,这些影响在焦点组织和物种之间可能有很大的差异。我接着讨论了甲状腺激素在变温动物热塑性中的作用可以揭示压力源相互作用以及甲状腺激素调节的中枢与外周水平。最后,我专注于甲状腺激素信号在动物热反应中的保守性质,特别提到从变温动物到恒温动物的范围。我利用这个框架强调了将进一步解决跨越动物的甲状腺激素作用进化轨迹的研究途径。我希望强调 3 厘米长的鱼的冷驯化过程中甲状腺激素的作用可以为正在进行的关于压力源相互作用的影响、可塑性的潜在成本、恒温的进化以及全球变化的影响的争论做出贡献。

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