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Cellular, Molecular, and Physiological Adaptations of Hibernation: The Solution to Environmental Challenges.
Annual Review of Cell and Developmental Biology ( IF 11.3 ) Pub Date : 2020-10-06 , DOI: 10.1146/annurev-cellbio-012820-095945
Sarah M Mohr 1, 2 , Sviatoslav N Bagriantsev 1 , Elena O Gracheva 1, 2
Affiliation  

Thriving in times of resource scarcity requires an incredible flexibility of behavioral, physiological, cellular, and molecular functions that must change within a relatively short time. Hibernation is a collection of physiological strategies that allows animals to inhabit inhospitable environments, where they experience extreme thermal challenges and scarcity of food and water. Many different kinds of animals employ hibernation, and there is a spectrum of hibernation phenotypes. Here, we focus on obligatory mammalian hibernators to identify the unique challenges they face and the adaptations that allow hibernators to overcome them. This includes the cellular and molecular strategies used to combat low environmental and body temperatures and lack of food and water. We discuss metabolic, neuronal, and hormonal cues that regulate hibernation and how they are thought to be coordinated by internal clocks. Last, we touch on questions that are left to be addressed in the field of hibernation research. Studies from the last century and more recent work reveal that hibernation is not simply a passive reduction in body temperature and vital parameters but rather an active process seasonally regulated at the molecular, cellular, and organismal levels.

中文翻译:


冬眠的细胞、分子和生理适应:环境挑战的解决方案。

在资源稀缺时期蓬勃发展需要行为、生理、细胞和分子功能的难以置信的灵活性,这些功能必须在相对较短的时间内发生变化。冬眠是一系列生理策略,使动物能够居住在荒凉的环境中,在那里它们经历极端的热挑战和食物和水的短缺。许多不同种类的动物都采用冬眠,并且冬眠表现型也多种多样。在这里,我们专注于强制性哺乳动物冬眠者,以确定它们面临的独特挑战以及使冬眠者克服这些挑战的适应性。这包括用于对抗低环境和体温以及食物和水缺乏的细胞和分子策略。我们讨论代谢的、神经元的、以及调节冬眠的激素线索,以及它们如何被内部时钟协调。最后,我们谈到了冬眠研究领域有待解决的问题。上个世纪的研究和最近的研究表明,冬眠不仅仅是体温和重要参数的被动降低,而是在分子、细胞和有机体水平上季节性调节的主动过程。

更新日期:2020-10-08
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