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高基因流下的局部适应:温度参数驱动普通青蛙(Rana temporaria)对海拔的适应。

Local adaptation with high gene flow: temperature parameters drive adaptation to altitude in the common frog (Rana temporaria).

机构信息

Institute of Biodiversity, Animal Health and Comparative Medicine, University of Glasgow, Glasgow, G12 8QQ, UK.

出版信息

Mol Ecol. 2014 Feb;23(3):561-74. doi: 10.1111/mec.12624. Epub 2014 Jan 20.

Abstract

Both environmental and genetic influences can result in phenotypic variation. Quantifying the relative contributions of local adaptation and phenotypic plasticity to phenotypes is key to understanding the effect of environmental variation on populations. Identifying the selective pressures that drive divergence is an important, but often lacking, next step. High gene flow between high- and low-altitude common frog (Rana temporaria) breeding sites has previously been demonstrated in Scotland. The aim of this study was to assess whether local adaptation occurs in the face of high gene flow and to identify potential environmental selection pressures that drive adaptation. Phenotypic variation in larval traits was quantified in R. temporaria from paired high- and low-altitude sites using three common temperature treatments. Local adaptation was assessed using Q(ST)-F(ST) analyses, and quantitative phenotypic divergence was related to environmental parameters using Mantel tests. Although evidence of local adaptation was found for all traits measured, only variation in larval period and growth rate was consistent with adaptation to altitude. Moreover, this was only evident in the three mountains with the highest high-altitude sites. This variation was correlated with mean summer and winter temperatures, suggesting that temperature parameters are potentially strong selective pressures maintaining local adaptation, despite high gene flow.

摘要

环境和遗传因素都会导致表型变异。量化局部适应和表型可塑性对表型的相对贡献,是理解环境变化对种群影响的关键。确定导致分歧的选择压力是一个重要但经常缺乏的下一步。先前在苏格兰已经证明,高海拔和低海拔的普通青蛙(Rana temporaria)繁殖地之间存在高基因流。本研究的目的是评估在存在高基因流的情况下是否会发生局部适应,并确定驱动适应的潜在环境选择压力。使用三种常见的温度处理方法,在来自高海拔和低海拔配对地点的 R. temporaria 幼虫中量化了表型特征的变化。使用 Q(ST)-F(ST)分析评估了局部适应,并用 Mantel 检验将定量表型差异与环境参数相关联。尽管所有测量的特征都存在局部适应的证据,但只有幼虫期和生长率的变化与海拔适应一致。此外,这仅在三个具有最高高海拔地点的山脉中明显。这种变异与夏季和冬季平均温度相关,表明尽管存在高基因流,温度参数仍然是维持局部适应的潜在强选择压力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/169c/4285318/ee0706dc0859/mec0023-0561-f1.jpg

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