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在温带条件下,自然授时因子无法补偿生物钟功能丧失对关键行为定时的影响。

Natural Zeitgebers Under Temperate Conditions Cannot Compensate for the Loss of a Functional Circadian Clock in Timing of a Vital Behavior in .

机构信息

Neurobiology and Genetics, Würzburg Insect Research, Theodor-Boveri-Institute, Biocenter, University of Würzburg, Würzburg, Germany.

Animal Ecology and Tropical Biology, Theoretical Evolutionary Ecology Group, Theodor-Boveri-Institute, Biocenter, University of Würzburg, Würzburg, Germany.

出版信息

J Biol Rhythms. 2021 Jun;36(3):271-285. doi: 10.1177/0748730421998112. Epub 2021 Mar 22.

Abstract

The adaptive significance of adjusting behavioral activities to the right time of the day seems obvious. Laboratory studies implicated an important role of circadian clocks in behavioral timing and rhythmicity. Yet, recent studies on clock-mutant animals questioned this importance under more naturalistic settings, as various clock mutants showed nearly normal diel activity rhythms under seminatural zeitgeber conditions. We here report evidence that proper timing of eclosion, a vital behavior of the fruit fly , requires a functional molecular clock under quasi-natural conditions. In contrast to wild-type flies, mutants with a defective molecular clock showed impaired rhythmicity and gating in a temperate environment even in the presence of a full complement of abiotic zeitgebers. Although mutants still eclosed during a certain time window during the day, this time window was much broader and loosely defined, and rhythmicity was lower or lost as classified by various statistical measures. Moreover, peak eclosion time became more susceptible to variable day-to-day changes of light. In contrast, flies with impaired peptidergic interclock signaling ( and PDF receptor mutants) eclosed mostly rhythmically with normal gate sizes, similar to wild-type controls. Our results suggest that the presence of natural zeitgebers is not sufficient, and a functional molecular clock is required to induce stable temporal eclosion patterns in flies under temperate conditions with considerable day-to-day variation in light intensity and temperature. Temperate zeitgebers are, however, sufficient to functionally rescue a loss of PDF-mediated clock-internal and -output signaling.

摘要

调整行为活动以适应一天中的适当时间的适应意义似乎是显而易见的。实验室研究表明,生物钟在行为定时和节律性方面起着重要作用。然而,最近对生物钟突变体动物的研究对这种重要性提出了质疑,因为各种生物钟突变体在更自然的设置下表现出几乎正常的昼夜活动节律。我们在这里报告的证据表明,在准自然条件下,一个功能正常的分子钟对于果蝇的蜕皮这一重要行为是必要的。与野生型果蝇相比,即使存在完整的非生物授时因子,分子钟有缺陷的突变体在温带环境中表现出节律性和门控受损。尽管 突变体仍在白天的某个时间窗口内蜕皮,但这个时间窗口要宽得多,且定义不严格,并且节律性较低或根据各种统计措施丢失。此外,峰值蜕皮时间对光照的每日变化更加敏感。相比之下,具有肽能跨时钟信号传导受损( 和 PDF 受体突变体)的果蝇主要以正常的门控大小进行有节奏的蜕皮,类似于野生型对照。我们的结果表明,即使存在自然授时因子,在温带条件下,由于光照强度和温度的日常变化较大,一个功能正常的分子钟对于诱导稳定的时间性蜕皮模式也是必要的。然而,温带授时因子足以有效地挽救 PDF 介导的时钟内部和输出信号的丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb24/8114442/201fde8ab85c/10.1177_0748730421998112-fig1.jpg

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