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Using Reciprocal Transplants to Assess Local Adaptation Genetic Rescue and Sexual Selection in Newly Established Populations

机译:使用倒数移植评估新建立群体的局部适应遗传救援和性选择

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摘要

Small populations establishing on colonization fronts have to adapt to novel environments with limited genetic variation. The pace at which they can adapt, and the influence of genetic variation on their success, are key questions for understanding intraspecific diversity. To investigate these topics, we performed a reciprocal transplant experiment between two recently founded populations of brown trout in the sub-Antarctic Kerguelen Islands. Using individual tagging and genetic assignment methods, we tracked the fitness of local and foreign individuals, as well as the fitness of their offspring over two generations. In both populations, although not to the same extent, gene flow occurred between local and foreign gene pools. In both cases, however, we failed to detect obvious footprints of local adaptation (which should limit gene flow) and only weak support for genetic rescue (which should enhance gene flow). In the population where gene flow from foreign individuals was low, no clear differences were observed between the fitness of local, foreign, and F1 hybrid individuals. In the population where gene flow was high, foreign individuals were successful due to high mating success rather than high survival, and F1 hybrids had the same fitness as pure local offspring. These results suggest the importance of considering sexual selection, rather than just local adaptation and genetic rescue, when evaluating the determinants of success in small and recently founded populations.
机译:在殖民化方面建立的小群体必须适应具有有限的遗传变异的新颖环境。他们可以适应的步伐以及遗传变异对其成功的影响,是理解内部多样性的关键问题。为了调查这些主题,我们在南极Kerguten岛中的两个最近成立的棕色鳟鱼中进行了互殖移植实验。使用个别标记和遗传分配方法,我们跟踪了地方和外国人的健身,以及两代后代的适应性。在两种群体中,虽然没有相同的程度,但在局部和外部基因库之间发生基因流动。然而,在这两种情况下,我们未能检测到局部适应的明显占地面积(应该限制基因流动),并且只对遗传救援的弱支持(这应该增强基因流动)。在来自异物的基因流量低的人群中,在局部,外国和F1杂交个体的适应性之间没有观察到明确的差异。在基因流动高的人群中,由于高交配成功而不是高生存率,外国人类成功,F1杂交种具有与纯局部后代相同的健康。这些结果表明,在评估小而最近成立的人群成功的决定因素时,考虑性选择,而不是局部适应和遗传救援的重要性。

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