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A damping circadian clock drives weak oscillations in metabolism and locomotor activity of aphids (Acyrthosiphon pisum)

机译:阻尼昼夜节律时钟驱动蚜虫(Piyr)的新陈代谢和运动活动减弱

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摘要

Timing seasonal events, like reproduction or diapause, is crucial for the survival of many species. Global change causes phenologies worldwide to shift, which requires a mechanistic explanation of seasonal time measurement. Day length (photoperiod) is a reliable indicator of winter arrival, but it remains unclear how exactly species measure day length. A reference for time of day could be provided by a circadian clock, by an hourglass clock, or, as some newer models suggest, by a damped circadian clock. However, damping of clock outputs has so far been rarely observed. To study putative clock outputs of Acyrthosiphon pisum aphids, we raised individual nymphs on coloured artificial diet, and measured rhythms in metabolic activity in light-dark illumination cycles of 16:08 hours (LD) and constant conditions (DD). In addition, we kept individuals in a novel monitoring setup and measured locomotor activity. We found that A. pisum is day-active in LD, potentially with a bimodal distribution. In constant darkness rhythmicity of locomotor behaviour persisted in some individuals, but patterns were mostly complex with several predominant periods. Metabolic activity, on the other hand, damped quickly. A damped circadian clock, potentially driven by multiple oscillator populations, is the most likely explanation of our results.
机译:定时繁殖,滞育等季节性事件对许多物种的生存至关重要。全球变化导致全球物候发生变化,这需要对季节时间测量进行机械解释。日长(光周期)是冬季到来的可靠指标,但尚不清楚物种如何精确地测量日长。一天的参考可以通过生物钟,沙漏时钟或某些阻尼模型的生物钟来提供。但是,到目前为止,很少观察到时钟输出的衰减。为了研究假定的蚜虫蚜虫的时钟输出,我们在有色人工饮食上饲养了若虫,并在16:08小时(LD)和恒定条件(DD)的明暗照明周期中测量了代谢活动的节律。此外,我们让个人处于一种新颖的监视环境中并测量了运动活动。我们发现皮毛曲霉在LD中是日活跃的,可能具有双峰分布。在不断的黑暗中,运动行为的节律性在某些个体中持续存在,但是模式主要是复杂的,并具有几个主要时期。另一方面,代谢活动迅速减弱。可能由多个振荡器群驱动的阻尼生物钟是我们的结果的最可能解释。

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