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Gene flow and selection on phenotypic plasticity in an island system of rana temporaria

机译:蛙属岛屿系统中的基因流动和表型可塑性选择

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Gene flow is often considered to be one of the main factors that constrains local adaptation in a heterogeneous environment. However, gene flow may also lead to the evolution of phenotypic plasticity. We investigated the effect of gene flow on local adaptation and phenotypic plasticity in development time in island populations of the common frog Rana temporaria which breed in pools that differ in drying regimes. This was done by investigating associations between traits (measured in a common garden experiment) and selective factors (pool drying regimes and gene flow from other populations inhabiting different environments) by regression analyses and by comparing pairwise FST values (obtained from microsatellite analyses) with pairwise Q_(ST) values. We found that the degree of phenotypic plasticity was positively correlated with gene flow from other populations inhabiting different environments (among-island environmental heterogeneity), as well as with local environmental heterogeneity within each population. Furthermore, local adaptation, manifested in the correlation between development time and the degree of pool drying on the islands, appears to have been caused by divergent selection pressures. The local adaptation in development time and phenotypic plasticity is quite remarkable, because the populations are young (less than 300 generations) and substantial gene flow is present among islands.
机译:基因流动通常被认为是限制异质环境中局部适应的主要因素之一。但是,基因流也可能导致表型可塑性的演变。我们调查了基因流量对普通蛙蛙蛙岛的岛屿种群在发育时间内的局部适应性和表型可塑性的影响,该蛙种群在不同干燥方式的水池中繁殖。这是通过回归分析调查性状(在普通花园实验中测量)与选择因素(池干燥方式和来自其他居住在不同环境的其他种群的基因流)之间的关联以及通过将成对的FST值(通过微卫星分析获得)与成对进行比较来完成的。 Q_(ST)值。我们发现,表型可塑性的程度与来自居住在不同环境中的其他种群的基因流正相关(在岛屿环境异质性之中),以及与每个种群中的局部环境异质性正相关。此外,局部适应性表现为发育时间与岛屿上泳池干燥程度之间的相关性,似乎是由不同的选择压力引起的。发育时间和表型可塑性的局部适应性非常出色,这是因为种群年轻(少于300代),并且岛间存在大量基因流。

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