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快速的局部适应与表型可塑性相关。

Rapid local adaptation linked with phenotypic plasticity.

作者信息

Sun Syuan-Jyun, Catherall Andrew M, Pascoal Sonia, Jarrett Benjamin J M, Miller Sara E, Sheehan Michael J, Kilner Rebecca M

机构信息

Department of Zoology University of Cambridge Cambridge CB2 3EJ United Kingdom.

Department of Entomology Michigan State University East Lansing Michigan 48824.

出版信息

Evol Lett. 2020 May 27;4(4):345-359. doi: 10.1002/evl3.176. eCollection 2020 Aug.

Abstract

Models of "plasticity-first" evolution are attractive because they explain the rapid evolution of new complex adaptations. Nevertheless, it is unclear whether plasticity can facilitate rapid microevolutionary change between diverging populations. Here, we show how plasticity may have generated adaptive differences in fecundity between neighboring wild populations of burying beetles . These populations occupy distinct Cambridgeshire woodlands that are just 2.5 km apart and that probably originated from a common ancestral population about 1000-4000 years ago. We find that populations are divergently adapted to breed on differently sized carrion. Adaptive differences in clutch size and egg size are associated with divergence at loci connected with oogenesis. The populations differ specifically in the elevation of the reaction norm linking clutch size to carrion size (i.e., genetic accommodation), and in the likelihood that surplus offspring will be lost after hatching. We suggest that these two processes may have facilitated rapid local adaptation on a fine-grained spatial scale.

摘要

“可塑性优先”进化模型很有吸引力,因为它们解释了新的复杂适应性特征的快速进化。然而,尚不清楚可塑性是否能够促进分化种群之间的快速微进化变化。在此,我们展示了可塑性如何在埋葬甲虫相邻的野生种群之间产生繁殖力的适应性差异。这些种群占据了剑桥郡不同的林地,相距仅2.5公里,可能起源于大约1000 - 4000年前的一个共同祖先种群。我们发现,种群在不同大小的腐肉上繁殖呈现出不同的适应性。窝卵数和卵大小的适应性差异与卵子发生相关位点的分化有关。这些种群在将窝卵数与腐肉大小联系起来的反应规范(即遗传顺应)的高度以及孵化后多余后代丢失的可能性方面存在特定差异。我们认为,这两个过程可能促进了在细粒度空间尺度上的快速局部适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c530/7403679/cae7863598ff/EVL3-4-345-g001.jpg

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