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Latitudinal gradients in climatic-niche evolution accelerate trait evolution at high latitudes

机译:气候生态位演化中的纬度梯度加速了高纬度地区的性状演化

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Despite the importance of divergent selection to the speed of evolution, it remains poorly understood if divergent selection is more prevalent in the tropics (where species richness is highest), or at high latitudes (where paleoclimate change has been most intense). We tested whether the rate of climatic-niche evolution - one proxy for divergent selection - varies with latitude for 111 pairs of bird species. Using Brownian motion and Ornsetin-Ulhenbeck models, we show that evolutionary rates along two important axes of the climatic-niche - temperature and seasonality - have been faster at higher latitudes. We then tested whether divergence of the climatic-niche was associated with evolution in traits important in ecological differentiation (body mass) and reproductive isolation (song), and found that climatic divergence is associated with faster rates in both measures. These results highlight the importance of climate-mediated divergent selection pressures in driving evolutionary divergence and reproductive isolation at high latitudes.
机译:尽管发散选择对进化速度的重要性,但在热带(物种丰富度最高)或高纬度地区(古气候变化最强烈的地区)发散选择是否更为普遍,人们仍然知之甚少。我们测试了111对鸟类物种的气候生态位演化速率(一种不同选择的代表)是否随纬度变化。使用布朗运动和Ornsetin-Ulhenbeck模型,我们显示出沿气候生态位的两个重要轴-温度和季节性-的演化速率在较高纬度时更快。然后,我们测试了气候生态位的散布是否与对生态分化(体重)和生殖隔离(歌曲)重要的性状的进化有关,并发现在这两种措施中,气候散布与更快的速率相关。这些结果突出了气候介导的发散选择压力在驱动高纬度地区的演化发散和生殖隔离方面的重要性。

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