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昼夜节律的自然可塑性是由蜜蜂分子生物钟机制的重组介导的。

Natural plasticity in circadian rhythms is mediated by reorganization in the molecular clockwork in honeybees.

作者信息

Shemesh Yair, Cohen Mira, Bloch Guy

机构信息

Department of Evolution, Systematics, and Ecology, The Alexander Silberman Institute of Life Sciences, Berman 114, Givat Ram Campus, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.

出版信息

FASEB J. 2007 Aug;21(10):2304-11. doi: 10.1096/fj.06-8032com. Epub 2007 Mar 14.

Abstract

Various animals naturally switch to considerable periods of around-the-clock activity with no apparent ill effects. Such plasticity in overt circadian rhythms might be observed because the clock is masked by the influence of external factors, is uncoupled from behavioral outputs, or results from genuine plasticity in the clock machinery. We studied honeybees in which plasticity in circadian rhythms is socially modulated and associated with the division of labor. We confirm that "nurse" bees care for the brood around-the-clock even when experiencing a light:dark illumination regime. However, nurses transferred from the hive to individual cages in constant conditions have robust circadian rhythms in locomotor activity with an onset of activity at the subjective morning. These data indicate that circadian rhythmicity in nurses depends on their environment, and suggest that some clockwork components were entrained even in nurses active around the clock while in the hive. Brain oscillations in transcript abundance for the putative clock genes Period, Cryptochrome-m, Cycle, and Timeout were attenuated or totally suppressed in nurses as compared to behaviorally rhythmic foragers, irrespective of the illumination regime. These findings provide the first support for the hypothesis that natural plasticity in circadian rhythms is associated with reorganization of the internal clockwork.

摘要

各种动物会自然地切换到持续约24小时的活动状态,且没有明显的不良影响。观察到这种明显的昼夜节律可塑性,可能是因为生物钟受到外部因素的影响而被掩盖、与行为输出解耦,或者是生物钟机制本身存在真正的可塑性。我们研究了蜜蜂,其昼夜节律的可塑性受到社会调节,并与劳动分工相关。我们证实,“保育”蜂即使在明暗交替的光照条件下,也会全天候照顾幼虫。然而,在恒定条件下从蜂巢转移到单独笼子里的保育蜂,其运动活动具有强大的昼夜节律,且在主观早晨开始活动。这些数据表明,保育蜂的昼夜节律性取决于它们所处的环境,并表明即使在蜂巢中全天候活动的保育蜂中,一些生物钟组件也会被调节。与行为有节律的觅食蜂相比,无论光照条件如何,保育蜂中假定的生物钟基因Period、Cryptochrome-m、Cycle和Timeout的转录本丰度的脑振荡都会减弱或完全被抑制。这些发现首次为昼夜节律的自然可塑性与内部生物钟重组相关这一假说提供了支持。

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