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发育温度会改变求偶活动和信号偏好关系的热敏感性,但不会改变交配率。

Developmental temperature alters the thermal sensitivity of courtship activity and signal-preference relationships, but not mating rates.

机构信息

Department of Biology, Saint Louis University, 3507 Laclede Avenue, St. Louis, MO, 63103, USA.

Harris Stowe State University, St. Louis, USA.

出版信息

Oecologia. 2023 May;202(1):97-111. doi: 10.1007/s00442-023-05376-z. Epub 2023 May 11.

Abstract

Mating behaviors are sensitive to novel or stressful thermal conditions, particularly for ectothermic organisms. An organism's sensitivity to temperature, which may manifest in altered mating outcomes, can be shaped in part by temperatures experienced during development. Here, we tested how developmental temperature shapes the expression of adult mating-related behaviors across different ambient conditions, with a focus on courtship behavior, mating rates, and mating signals and preferences. To do so, we reared treehoppers under two temperature regimes and then tested the expression of male and female mating behaviors across a range of ambient temperatures. We found that developmental temperature affects the thermal sensitivity of courtship behavior and mating signals for males. However, developmental temperature did not affect the thermal sensitivity of courtship or mate preferences in females. This sex-specific plasticity did not alter the likelihood of mating across ambient temperatures, but it did disrupt how closely mating signals and preferences matched each other at higher ambient temperatures. As a result, developmental temperature could alter sexual selection through signal-preference de-coupling. We further discuss how adult age may drive sex-specific results, and the potential for mismatches between developmental and mating thermal environments under future climate change predictions.

摘要

交配行为对外界或压力条件的变化很敏感,尤其是对变温动物而言。生物对温度的敏感性可能会影响交配结果,而这种敏感性部分取决于发育过程中经历的温度。在这里,我们测试了发育温度如何在不同环境条件下塑造成年交配相关行为的表达,重点是求偶行为、交配率以及交配信号和偏好。为此,我们在两种温度条件下饲养树蜂,然后在一系列环境温度下测试雄性和雌性交配行为的表达。我们发现,发育温度会影响雄性的求偶行为和交配信号的温度敏感性。然而,发育温度并不影响雌性的求偶行为或交配偏好的温度敏感性。这种性别特异性的可塑性并没有改变环境温度下交配的可能性,但它确实破坏了在较高环境温度下交配信号和偏好之间的匹配程度。因此,发育温度可能通过信号偏好解耦来改变性选择。我们进一步讨论了成年年龄如何驱动性别特异性结果,以及在未来气候变化预测下,发育和交配热环境之间可能出现的不匹配情况。

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