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Evolution of mating behavior between two populations adapting to common environmental conditions

机译:适应共同环境条件的两个种群之间交配行为的演变

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AbstractPopulations from the same species may be differentiated across contrasting environments, potentially affecting reproductive isolation among them. When such populations meet in a novel common environment, this isolation may be modified by biotic or abiotic factors. Curiously, the latter have been overlooked. We filled this gap by performing experimental evolution of three replicates of two populations of Drosophila subobscura adapting to a common laboratorial environment, and simulated encounters at three time points during this process. Previous studies showed that these populations were highly differentiated for several life-history traits and chromosomal inversions. First, we show initial differentiation for some mating traits, such as assortative mating and male mating rate, but not others (e.g., female mating latency). Mating frequency increased during experimental evolution in both sets of populations. The assortative mating found in one population remained constant throughout the adaptation process, while disassortative mating of the other population diminished across generations. Additionally, differences in male mating rate were sustained across generations. This study shows that mating behavior evolves rapidly in response to adaptation to a common abiotic environment, although with a complex pattern that does not correspond to the quick convergence seen for life-history traits.
机译:摘要来自同一物种的种群可能在不同的环境中有所区别,从而可能影响它们之间的生殖隔离。当这些种群在新的共同环境中相遇时,这种隔离可能会受到生物或非生物因素的影响。奇怪的是,后者被忽略了。我们通过对适应于共同实验室环境的两个果蝇亚果蝇种群的三个重复进行实验进化,并在此过程中的三个时间点模拟相遇,对实验进行了进化,从而填补了这一空白。先前的研究表明,这些种群在几种生活史特征和染色体倒置方面具有高度差异性。首先,我们显示出某些交配性状的初始差异,例如分类交配和雄性交配率,而其他则没有(例如雌性交配潜伏期)。两组人群的实验进化过程中,交配频率均增加。在整个适应过程中,一个种群的杂种交配保持不变,而另一种群的杂种交配世代减少。此外,各代之间的雄性交配率差异仍然存在。这项研究表明,交配行为响应于对普通非生物环境的适应而迅速演变,尽管其复杂模式与生活史特征所见的快速收敛并不对应。

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