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昆虫滞育:从丰富的历史走向令人兴奋的未来。

Insect diapause: from a rich history to an exciting future.

作者信息

Denlinger David L

机构信息

Departments of Entomology and Evolution, Ecology and Organismal Biology, Ohio State University, Columbus, OH 43210, USA.

出版信息

J Exp Biol. 2023 Feb 15;226(4). doi: 10.1242/jeb.245329. Epub 2023 Feb 28.

Abstract

Diapause, a stage-specific developmental arrest, is widely exploited by insects to bridge unfavorable seasons. Considerable progress has been made in understanding the ecology, physiology and evolutionary implications of insect diapause, yet intriguing questions remain. A more complete understanding of diapause processes on Earth requires a better geographic spread of investigations, including more work in the tropics and at high latitudes. Questions surrounding energy management and trade-offs between diapause and non-diapause remain understudied. We know little about how maternal effects direct the diapause response, and regulators of prolonged diapause are also poorly understood. Numerous factors that were recently linked to diapause are still waiting to be placed in the regulatory network leading from photoreception to engagement of the diapause program. These factors include epigenetic processes and small noncoding RNAs, and emerging data also suggest a role for the microbiome in diapause regulation. Another intriguing feature of diapause is the complexity of the response, resulting in a diverse suite of responses that comprise the diapause syndrome. Select transcription factors likely serve as master switches turning on these diverse responses, but we are far from understanding the full complexity. The richness of species displaying diapause offers a platform for seeking common components of a 'diapause toolbox'. Across latitudes, during invasion events and in a changing climate, diapause offers grand opportunities to probe evolutionary change and speciation. At a practical level, diapause responses can be manipulated for insect control and long-term storage. Diapausing insects also contain a treasure trove of pharmacological compounds and offer promising models for human health.

摘要

滞育是一种特定阶段的发育停滞,昆虫广泛利用它来度过不利季节。在理解昆虫滞育的生态学、生理学及进化意义方面已取得了相当大的进展,但仍存在一些有趣的问题。要更全面地了解地球上的滞育过程,需要在地理上更广泛地开展研究,包括在热带地区和高纬度地区开展更多工作。围绕滞育与非滞育之间能量管理及权衡的问题仍未得到充分研究。我们对母体效应如何指导滞育反应知之甚少,对长期滞育的调节因子也了解不足。许多最近与滞育相关的因素仍有待纳入从光感受器到滞育程序启动的调控网络中。这些因素包括表观遗传过程和小非编码RNA,新出现的数据还表明微生物群在滞育调节中发挥作用。滞育的另一个有趣特征是反应的复杂性,导致了一系列构成滞育综合征的多样反应。特定的转录因子可能作为主开关开启这些多样反应,但我们离完全理解其全部复杂性还相差甚远。表现出滞育的物种丰富性为寻找“滞育工具箱”的共同组成部分提供了一个平台。在不同纬度地区、入侵事件期间以及气候变化过程中,滞育为探究进化变化和物种形成提供了绝佳机会。在实际应用层面,滞育反应可用于害虫防治和长期储存。滞育昆虫还含有大量药理化合物,为人类健康提供了有前景的模型。

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