Rolshausen Gregor, Muttalib Shahin, Kaeuffer Renaud, Oke Krista B, Hanson Dieta, Hendry Andrew P
Redpath Museum and Department of Biology, McGill University, 859 Sherbrooke St. W., Montreal, Quebec, H3A0C4, Canada.
Evolution. 2015 Sep;69(9):2289-302. doi: 10.1111/evo.12739. Epub 2015 Aug 19.
Populations receiving high maladaptive gene flow are expected to experience strong directional selection-because gene flow pulls mean phenotypes away from local fitness peaks. We tested this prediction by means of a large and replicated mark-recapture study of threespine stickleback (Gasterosteus aculeatus) in two stream populations. One of the populations (outlet) experiences high gene flow from the lake population and its morphology is correspondingly poorly adapted. The other population (inlet) experiences very low gene flow from the lake population and its morphology is correspondingly well adapted. Contrary to the above prediction, selection was not stronger in the outlet than in the inlet, a result that forced us to consider potential reasons for why maladaptive gene flow might not increase selection. Of particular interest, we show by means of a simple population genetic model that maladaptive gene flow can-under reasonable conditions-decrease the strength of directional selection. This outcome occurs when immigrants decrease mean fitness in the resident population, which decreases the strength of selection against maladapted phenotypes. We argue that this previously unrecognized effect of gene flow deserves further attention in theoretical and empirical studies.
接受高适应不良基因流的种群预计会经历强烈的定向选择,因为基因流会使平均表型偏离当地的适应度峰值。我们通过对两个溪流种群的三刺鱼(Gasterosteus aculeatus)进行大规模重复标记重捕研究来检验这一预测。其中一个种群(出水口种群)经历了来自湖泊种群的高基因流,其形态相应地适应性较差。另一个种群(入水口种群)经历了来自湖泊种群的极低基因流,其形态相应地适应性良好。与上述预测相反,出水口种群的选择并不比入水口种群更强,这一结果迫使我们思考适应不良基因流可能不会增加选择的潜在原因。特别值得关注的是,我们通过一个简单的种群遗传模型表明,在合理条件下,适应不良基因流可以降低定向选择的强度。当迁入者降低了本地种群的平均适应度,从而降低了对适应不良表型的选择强度时,就会出现这种结果。我们认为,基因流的这种此前未被认识到的效应在理论和实证研究中值得进一步关注。