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Life history as a constraint on plasticity: developmental timing is correlated with phenotypic variation in birds

机译:生命史是可塑性的限制:发育时间与鸟类的表型变异相关

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摘要

Understanding why organisms vary in developmental plasticity has implications for predicting population responses to changing environments and the maintenance of intraspecific variation. The epiphenotype hypothesis posits that the timing of development can constrain plasticity—the earlier alternate phenotypes begin to develop, the greater the difference that can result amongst the final traits. This research extends this idea by considering how life history timing shapes the opportunity for the environment to influence trait development. We test the prediction that the earlier an individual begins to actively interact with and explore their environment, the greater the opportunity for plasticity and thus variation in foraging traits. This research focuses on life history variation across four groups of birds using museum specimens and measurements from the literature. We reasoned that greater phenotypic plasticity, through either environmental effects or genotype-by-environment interactions in development, would be manifest in larger trait ranges (bills and tarsi) within species. Among shorebirds and ducks, we found that species with relatively shorter incubation times tended to show greater phenotypic variation. Across warblers and sparrows, we found little support linking timing of flight and trait variation. Overall, our results also suggest a pattern between body size and trait variation, consistent with constraints on egg size that might result in larger species having more environmental influences on development. Taken together, our results provide some support for the hypothesis that variation in life histories affects how the environment shapes development, through either the expression of plasticity or the release of cryptic genetic variation.
机译:了解生物体为何在发育可塑性方面有所变化,对预测种群对变化的环境的反应和维持种内变异具有重要意义。表型假设假设发展的时机可能会限制可塑性-替代表型开始发展的越早,最终性状之间的差异就越大。这项研究通过考虑生活史的时间安排如何塑造环境影响特质发展的机会来扩展这一思想。我们测试了这样的预测,即个体越早开始主动与之互动并探索他们的环境,可塑性就越大,从而导致觅食性状发生变化的机会也就越大。这项研究的重点是使用博物馆标本和文献资料对四类鸟类的生活史进行变异。我们认为,通过环境效应或基因型-环境相互作用在发育过程中表现出更大的表型可塑性,将在物种内更大的性状范围(比尔和塔尔西)中得到体现。在水鸟和鸭中,我们发现孵化时间相对较短的物种倾向于表现出更大的表型变异。在鸣鸟和麻雀上,我们发现很少有将飞行时间和特质变化联系起来的支持。总体而言,我们的研究结果还表明,在体型和性状变异之间存在一种模式,这与对卵子大小的限制一致,这可能导致更大的物种对发育产生更多的环境影响。综上所述,我们的结果为以下假设提供了一定的支持:生活史中的变异通过可塑性的表达或隐性遗传变异的释放影响环境如何影响发育。

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