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滞育:响应环境变化而延迟发育时钟。

Diapause: delaying the developmental clock in response to a changing environment.

机构信息

Department of Biology, University of Padova, Padova, Italy.

出版信息

Curr Top Dev Biol. 2013;105:213-46. doi: 10.1016/B978-0-12-396968-2.00008-7.

Abstract

Seasonal changes can induce organisms to modify their developmental growth. Many holometabolous insects, especially Lepidoptera, trigger diapause, an "actively induced" dormancy, for overwintering. Diapause is an alternative developmental pathway that reversibly blocks developmental growth during specific transitions and enhances the hibernating potential of the organism. Changes in environmental cues, such as light and temperature, trigger modifications in the levels, or in the timing, of developmental hormones. These in turn switch the developmental trajectory (diapause or direct development), strongly altering larval/pupal growth and inducing the appearance of diapause-bound seasonal morphs (polyphenism). We also discuss an example of vertebrate diapause using the killifish embryo as an example where diapause is an environmentally determined developmental switch analogous to that observed in lepidopteran dormancy. Based on the examples discussed here, we propose that the complex physiological responses leading to diapause might evolve quickly by relatively limited genetic changes in the regulation of hormonal signals that program normal developmental transitions.

摘要

季节变化会促使生物改变其发育生长。许多全变态昆虫,特别是鳞翅目昆虫,会为越冬而触发休眠,即“主动诱导”的休眠。休眠是一种替代的发育途径,它在特定的转变过程中可逆地阻止发育生长,并增强生物体的冬眠潜力。环境线索(如光和温度)的变化会触发发育激素水平或时间的改变。这些反过来又会改变发育轨迹(休眠或直接发育),强烈改变幼虫/蛹的生长,并诱导休眠相关的季节性形态(多态性)的出现。我们还讨论了一个脊椎动物休眠的例子,以食蚊鱼胚胎为例,其中休眠是一种类似于在鳞翅目昆虫休眠中观察到的环境决定的发育开关。基于这里讨论的例子,我们提出,导致休眠的复杂生理反应可能通过激素信号调控的相对有限的遗传变化迅速进化,这些变化编程了正常的发育转变。

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