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A dynamic continental moisture gradient drove Amazonian bird diversification

机译:动态的大陆湿度梯度推动了亚马逊鸟类的多样化

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The Amazon is the primary source of Neotropical diversity and a nexus for discussions on processes that drive biotic diversification. Biogeographers have focused on the roles of rivers and Pleistocene climate change in explaining high rates of speciation. We combine phylogeographic and niche-based paleodistributional projections for 23 upland terra firme forest bird lineages from across the Amazon to derive a new model of regional biological diversification. We found that climate-driven refugial dynamics interact with dynamic riverine barriers to produce a dominant pattern: Older lineages in the wetter western and northern parts of the Amazon gave rise to lineages in the drier southern and eastern parts. This climate/drainage basin evolution interaction links landscape dynamics with biotic diversification and explains the east-west diversity gradients across the Amazon.
机译:亚马逊是新热带多样性的主要来源,也是推动生物多样化进程的讨论的纽带。生物地理学家将重点放在河流和更新世气候变化在解释高物种形成率方面的作用上。我们结合了来自亚马逊地区的23种山地高地森林鸟类谱系的系统地理学和基于生态位的古地理分布预测,得出了区域生物多样化的新模型。我们发现,气候驱动的避难所动态与动态的河壁屏障相互作用,产生了主导格局:亚马逊河西部和北部较潮湿的较早世系在南部和东部较干旱的世系中产生。这种气候/流域演化相互作用将景观动态与生物多样性联系在一起,并解释了整个亚马逊河东西向的梯度变化。

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