打盹:濒临灭绝的冬眠者评估春雪条件,决定是结束冬眠还是重新进入冬眠。

Austin Z T Allison, Courtney J Conway, Alice E Morris, Amanda R Goldberg, Kristin Lohr, Russell Richards, Jon A Almack
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摘要

摘要 许多动物以年为周期,其生理和行为会随季节发生变化。冬眠的哺乳动物的生理和行为会发生最剧烈的季节性变化,其发生的时间会对动物的适应能力产生重大影响。调节这些深刻表型变化的环境线索将在很大程度上影响冬眠动物是否适应并最终适应气候变化。因此,确定冬眠终止时间的线索和近似机制至关重要。爱达荷州北部的地松鼠(Urocitellus brunneus)是一种稀有的特有物种,濒临灭绝。我们在自由活动的松鼠身上安装了地理定位器,以验证松鼠在决定终止季节性异温还是重新进入冬眠之前会评估春季地表条件的假设。爱达荷州北部的地松鼠经常在从冬眠中短暂苏醒后重新进入休眠状态,而且更有可能在春季较早的时候或受到残留积雪的挑战时重新进入休眠状态。雌性松鼠在出洞时遇到相对较浅的积雪时会重新进入冬眠状态,而雄性松鼠则会在春季积雪较深时重新进入冬眠状态。这种新行为以前被认为是雄性地松鼠精子发生所需的睾酮分泌在生理上的限制,并由年轮时钟激活。评估地表条件以决定何时结束冬眠可能有助于缓冲这些濒危松鼠对气候变化的影响。记录其他冬眠动物在多大程度上可以通过在出蛰后重新进入冬眠来改变出蛰时间,这将有助于确定哪些物种最有可能在气候变化下继续生存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hit Snooze: An Imperiled Hibernator Assesses Spring Snow Conditions to Decide Whether to Terminate Hibernation or Reenter Torpor.

AbstractMany animals follow annual cycles wherein physiology and behavior change seasonally. Hibernating mammals undergo one of the most drastic seasonal alterations of physiology and behavior, the timing of which can have significant fitness consequences. The environmental cues regulating these profound phenotypic changes will heavily influence whether hibernators acclimate and ultimately adapt to climate change. Hence, identifying the cues and proximate mechanisms responsible for hibernation termination timing is critical. Northern Idaho ground squirrels (Urocitellus brunneus)-a rare, endemic species threatened with extinction-exhibit substantial variation in hibernation termination phenology, but it is unclear what causes this variation. We attached geolocators to free-ranging squirrels to test the hypothesis that squirrels assess surface conditions in spring before deciding whether to terminate seasonal heterothermy or reenter torpor. Northern Idaho ground squirrels frequently reentered torpor following a brief initial emergence from hibernacula and were more likely to do so earlier in spring or when challenged by residual snowpack. Female squirrels reentered torpor when confronted with relatively shallow snowpack upon emergence, whereas male squirrels reentered torpor in response to deeper spring snowpack. This novel behavior was previously assumed to be physiologically constrained in male ground squirrels by testosterone production required for spermatogenesis and activated by the circannual clock. Assessing surface conditions to decide when to terminate hibernation may help buffer these threatened squirrels against climate change. Documenting the extent to which other hibernators can facultatively alter emergence timing by reentering torpor after emergence will help identify which species are most likely to persist under climate change.

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