Evolutionary interactions between thermal ecology and sexual selection

Evolutionary interactions between thermal ecology and sexual selection
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热生态与性选择之间的进化相互作用

DOI:
10.1111/ele.14072
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发表时间:
2022
期刊:
影响因子:
8.8
通讯作者:
Moore, Michael P.
Moore, Michael P.
中科院分区:
环境科学与生态学1区
文献类型:
--
作者:
Leith, Noah T.;Fowler‐Finn, Kasey D.;Moore, Michael P.

文献摘要

相似文献

热生态和交配竞争都是生态适应的普遍特征。最近的大量研究揭示了温度影响交配相互作用和性选择的多种方式。然而,随着生物体适应其热环境,热生物学和生殖生态学共同进化的潜力却被低估了。在这里,我们提出了一系列假设:(1)不仅热生态学如何影响交配系统动力学,而且交配动力学如何产生热性状的选择; (2)配偶竞争的热后果如何有利于热生物学和性特征的相互适应。我们在交配前和交配后过程的背景下讨论我们的假设。我们还呼吁未来的工作将实验和系统发育比较方法结合起来,以了解热生态学和性选择之间的进化反馈。总体而言,研究热生态学和性选择之间的相互反馈可能对于了解生物体如何适应过去的环境并在未来的环境中持续存在是必要的。
Thermal ecology and mate competition are both pervasive features of ecological adaptation. A surge of recent work has uncovered the diversity of ways in which temperature affects mating interactions and sexual selection. However, the potential for thermal biology and reproductive ecology to evolve together as organisms adapt to their thermal environment has been underappreciated. Here, we develop a series of hypotheses regarding (1) not only how thermal ecology affects mating system dynamics, but also how mating dynamics can generate selection on thermal traits; and (2) how the thermal consequences of mate competition favour the reciprocal co‐adaptation of thermal biology and sexual traits. We discuss our hypotheses in the context of both pre‐copulatory and post‐copulatory processes. We also call for future work integrating experimental and phylogenetic comparative approaches to understand evolutionary feedbacks between thermal ecology and sexual selection. Overall, studying reciprocal feedbacks between thermal ecology and sexual selection may be necessary to understand how organisms have adapted to the environments of the past and could persist in the environments of the future.