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章鱼胺驱动蜜蜂产热。

Octopamine drives honeybee thermogenesis.

机构信息

Behavioral Physiology and Sociobiology, Julius Maximilian University of Würzburg, Würzburg, Germany.

Institute for Pharmacy and Food Chemistry, Julius Maximilian University of Würzburg, Würzburg, Germany.

出版信息

Elife. 2022 Mar 15;11:e74334. doi: 10.7554/eLife.74334.

Abstract

In times of environmental change species have two options to survive: they either relocate to a new habitat or they adapt to the altered environment. Adaptation requires physiological plasticity and provides a selection benefit. In this regard, the Western honeybee () protrudes with its thermoregulatory capabilities, which enables a nearly worldwide distribution. Especially in the cold, shivering thermogenesis enables foraging as well as proper brood development and thus survival. In this study, we present octopamine signaling as a neurochemical prerequisite for honeybee thermogenesis: we were able to induce hypothermia by depleting octopamine in the flight muscles. Additionally, we could restore the ability to increase body temperature by administering octopamine. Thus, we conclude that octopamine signaling in the flight muscles is necessary for thermogenesis. Moreover, we show that these effects are mediated by β octopamine receptors. The significance of our results is highlighted by the fact the respective receptor genes underlie enormous selective pressure due to adaptation to cold climates. Finally, octopamine signaling in the service of thermogenesis might be a key strategy to survive in a changing environment.

摘要

在环境变化的时代,物种有两种生存选择:它们要么迁移到新的栖息地,要么适应变化的环境。适应需要生理可塑性,并提供选择优势。在这方面,西方蜜蜂()以其体温调节能力脱颖而出,这使其能够在全球范围内分布。特别是在寒冷的环境中,颤抖性产热使觅食以及适当的幼虫发育和生存成为可能。在这项研究中,我们提出章鱼胺信号作为蜜蜂产热的神经化学前提:我们能够通过耗尽飞行肌中的章鱼胺来引起体温过低。此外,我们可以通过给予章鱼胺来恢复增加体温的能力。因此,我们得出结论,飞行肌中的章鱼胺信号对于产热是必要的。此外,我们表明这些影响是由β章鱼胺受体介导的。我们的研究结果具有重要意义,因为由于适应寒冷气候,相应的受体基因受到巨大的选择压力。最后,章鱼胺信号在产热中的作用可能是在不断变化的环境中生存的关键策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7c8/8923666/41fa85ce56eb/elife-74334-fig1.jpg

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