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Keeping time without a spine: what can the insect clock teach us about seasonal adaptation?

机译:保持时间无脊椎:昆虫钟能教给我们有关季节适应的知识吗?

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摘要

Seasonal change in daylength (photoperiod) is widely used by insects to regulate temporal patterns of development and behaviour, including the timing of diapause (dormancy) and migration. Flexibility of the photoperiodic response is critical for rapid shifts to new hosts, survival in the face of global climate change and to reproductive isolation. At the same time, the daily circadian clock is also essential for development, diapause and multiple behaviours, including correct flight orientation during long-distance migration. Although studied for decades, how these two critical biological timing mechanisms are integrated is poorly understood, in part because the core circadian clock genes are all transcription factors or regulators that are able to exert multiple effects throughout the genome. In this chapter, we discuss clocks in the wild from the perspective of diverse insect groups across eco-geographic contexts from the Antarctic to the tropical regions of Earth. Application of the expanding tool box of molecular techniques will lead us to distinguish universal from unique mechanisms underlying the evolution of circadian and photoperiodic timing, and their interaction across taxonomic and ecological contexts represented by insects.This article is part of the themed issue ‘Wild clocks: integrating chronobiology and ecology to understand timekeeping in free-living animals’.
机译:白天的季节性变化(光周期)被昆虫广泛用来调节发育和行为的时间模式,包括滞育(休眠)和迁徙的时间。光周期反应的灵活性对于快速转移到新宿主,面对全球气候变化的生存和生殖隔离至关重要。同时,昼夜节律对于发育,滞育和多种行为(包括长途迁徙中的正确飞行方向)也至关重要。尽管进行了数十年的研究,但如何整合这两个关键的生物学计时机制却知之甚少,部分原因是核心生物钟基因都是能够在整个基因组中发挥多种作用的转录因子或调控因子。在本章中,我们从南极到地球热带地区的生态地理环境中,从各种昆虫群体的角度讨论野生时钟。分子技术的扩展工具箱的应用将使我们区分昼夜节律和光周期定时的进化以及它们在昆虫代表的分类和生态环境中的相互作用所基于的独特机制与普遍机制。本文是主题“野生时钟”的一部分:将年代生物学和生态学融为一体,以了解自由活动动物的计时。

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