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Mechanisms of animal diapause: recent developments from nematodes crustaceans insects and fish

机译:动物滞育的机理:线虫甲壳纲动物昆虫和鱼类的最新发展

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摘要

Life cycle delays are beneficial for opportunistic species encountering suboptimal environments. Many animals display a programmed arrest of development (diapause) at some stage(s) of their development, and the diapause state may or may not be associated with some degree of metabolic depression. In this review, we will evaluate current advancements in our understanding of the mechanisms responsible for the remarkable phenotype, as well as environmental cues that signal entry and termination of the state. The developmental stage at which diapause occurs dictates and constrains the mechanisms governing diapause. Considerable progress has been made in clarifying proximal mechanisms of metabolic arrest and the signaling pathways like insulin/Foxo that control gene expression patterns. Overlapping themes are also seen in mechanisms that control cell cycle arrest. Evidence is emerging for epigenetic contributions to diapause regulation via small RNAs in nematodes, crustaceans, insects, and fish. Knockdown of circadian clock genes in selected insect species supports the importance of clock genes in the photoperiodic response that cues diapause. A large suite of chaperone-like proteins, expressed during diapause, protects biological structures during long periods of energy-limited stasis. More information is needed to paint a complete picture of how environmental cues are coupled to the signal transduction that initiates the complex diapause phenotype, as well as molecular explanations for how the state is terminated. Excellent examples of molecular memory in post-dauer animals have been documented in Caenorhabditis elegans. It is clear that a single suite of mechanisms does not regulate diapause across all species and developmental stages.
机译:生命周期的延迟对于遇到次优环境的机会物种是有益的。许多动物在其某些发育阶段都表现出程序性的发育停滞(滞育),而滞育状态可能与某种程度的代谢抑制有关,也可能不相关。在这篇综述中,我们将评估我们对导致显着表型的机制以及信号进入和终止状态的环境提示的理解方面的最新进展。滞育发生的发育阶段决定并限制了滞育的机制。在阐明代谢停滞的近端机制和控制基因表达模式的信号通路(如胰岛素/ Foxo)方面已经取得了相当大的进展。在控制细胞周期停滞的机制中也可以看到重叠的主题。通过线虫,甲壳类动物,昆虫和鱼类中的小RNA,表观遗传对滞育调控的贡献的证据正在出现。在选定昆虫物种中昼夜节律时钟基因的敲除支持了时钟基因在提示滞育的光周期反应中的重要性。滞育期间表达的大量伴侣蛋白样蛋白在能量受限的停滞期中保护生物结构。需要更多信息来描绘环境线索如何与启动复杂的滞育表型的信号转导偶联,以及有关如何终止该状态的分子解释的完整图景。秀丽隐杆线虫中已记载了劳道氏动物中分子记忆的极好例子。显然,一套单独的机制并不能调节所有物种和发育阶段的滞育。

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