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Accuracy of fruit-fly eclosion rhythms evolves by strengthening circadian gating rather than developmental fine-tuning

机译:果蝇围捕节律的准确性是通过加强昼夜节律而不是发育微调来发展的

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Fruit flies (Drosophila melanogaster) eclose from their pupae mainly around dawn. The timing of eclosion is thought to confer adaptive benefits to the organisms and thus shows remarkable accuracy. However, it is not clear what factors are involved in the evolution of such accuracy in natural populations. In this study, we examined the relative contributions of gating of eclosion by the circadian clock versus clock-independent developmental rates and light-induced responses in the eclosion phenotype exhibited by fly populations that have evolved greater accuracy in eclosion rhythms compared to controls. We compared variation in timing of transitions between early developmental stages (pupariation and pigmentation), overall development time under constant light conditions – where circadian clocks are dysfunctional – and eclosion profiles when developmental rate was manipulated using different larval densities in selected and control stocks. Our results showed that stocks that have evolved greater accuracy of eclosion rhythms due to artificial selection do not show reduced individual variation in pupariation and pigmentation time compared to controls, though they do exhibit lower variation in eclosion time. Selected stocks also did not show lower variation in eclosion time under constant light conditions in contrast to the greater accuracy seen under light-dark cycles. Moreover, manipulations of developmental rate by varying larval density and inducing eclosion by changing onset of light phase did not alter the eclosion profile of selected stocks as much as it did controls, since selected stocks largely restricted eclosion to the daytime. These results suggest that fly populations selected for greater accuracy have evolved accurate eclosion rhythms primarily by strengthening circadian gating of eclosion rather than due to fine-tuning of clock-independent developmental processes.This article has an associated First Person interview with the first author of the paper.
机译:果蝇(果蝇(Drosophila melanogaster))主要在拂晓时从其p靠近。据认为,羽化的时机可为生物提供适应性好处,因此显示出了惊人的准确性。但是,尚不清楚哪些因素影响自然种群中这种准确性的演变。在这项研究中,我们研究了昼夜节律的门控相对于时钟独立的发育速度和苍蝇种群所表现出的灭顶表型的光诱导响应的相对贡献,这些苍蝇种群在闭环节律方面比对照具有更高的准确性。我们比较了早期发育阶段((粉和色素沉着)之间的过渡时间变化,在恒定光照条件下(昼夜节律失调的情况下)的总体发育时间以及在选定和对照种群中使用不同幼虫密度操纵发育速率时的脱落情况。我们的结果表明,与对照相比,由于人为选择而进化出更稳定的羽化节律的种群,尽管在羽化时间上表现出较低的变异,但其产粉和色素沉着时间的个体差异并未减少。与在明暗循环中观察到的更高的准确性相比,在恒定光照条件下,选定的种群在闭合时间上也没有表现出较低的变化。而且,通过改变幼虫密度和通过改变光相的发作诱导发育的操纵,并没有像选择的那样改变选定种群的脱落概况,因为选定种群在很大程度上限制了白天的脱落。这些结果表明,为获得更高的准确性而选择的果蝇种群主要通过加强昼夜节律控制而不是由于时钟独立的发育过程的微调而进化出了准确的羽衣律,本文对此进行了第一人称采访。纸。

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