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The Integrative Physiology of Insect Chill Tolerance

机译:昆虫寒冷宽容的综合生理学

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摘要

Cold tolerance is important in defining the distribution of insects. Here, we review the principal physiological mechanisms underlying homeostatic failure during cold exposure in this diverse group of ectotherms. When insects are cooled sufficiently, they suffer an initial loss of neuromuscular function ( chill coma) that is caused by decreased membrane potential and reduced excitability of the neuromuscular system. For chill-susceptible insects, chronic or severe chilling causes a disruption of ion and water homeostasis across membranes and epithelia that exacerbate the initial effects of chilling on membrane potential and cellular function, and these perturbations are tightly associated with the development of chill injury and mortality. The adaptation and acclimation responses that allow some insects to tolerate low temperatures are multifactorial and involve several physiological systems and biochemical adjustments. In this review, we outline a physiological model that integrates several of these responses and discuss how they collectively help to preserve cellular, organ, and organismal homeostasis at low temperature.
机译:耐寒性在定义昆虫的分布方面很重要。在此,我们在这种不同群体的异常患者中审查了稳态失败的主要生理机制。当昆虫充分冷却时,它们遭受由于膜电位降低和降低神经肌肉系统的兴奋性引起的神经肌肉功能(Chill Coma)的初始损失。对于寒冷易感昆虫,慢性或严重的冷却导致膜和上皮细胞的离子和水稳态发生,加剧了冷却对膜电位和细胞功能的初始效果,并且这些扰动与寒冷损伤和死亡率紧密相关。允许一些昆虫能够容忍低温的适应和适应响应是多因素,涉及若干生理系统和生物化学调整。在这篇综述中,我们概述了一种整合这些反应的生理模型,并讨论它们如何在低温下共同帮助保护细胞,器官和有机体稳态。

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