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The Neogene rise of the tropical Andes facilitated diversification of wax palms (Ceroxylon: Arecaceae) through geographical colonization and climatic niche separation

机译:热带安第斯山脉的新近纪崛起通过地理殖民化和气候生态位分离促进了蜡棕榈树(Ceroxylon:arecaceae)的多样化

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摘要

The tropical Andes are a biodiversity hotspot, partly due to their rich and complex floristic composition. A fundamental question regarding this outstanding biodiversity is what role the Andean orogeny has played in species diversification. Ceroxylon is a genus of endemic Andean palms that stands out in the palm family (Arecaceae) due to its adaptation to cold, mountainous environments. Here, we reconstruct the biogeography and climatic preference of this lineage to test the hypothesis that Andean uplift allowed diversification by providing suitable habitats along climatic and elevational gradients. Ancestral areas were reconstructed under a model allowing for founder-event speciation and climatic niches were inferred from climatic variables at present-day occurrences of all species. Niche evolution in a phylogenetic framework was evaluated by testing differences between the climatic niches of clades. Our analyses identified four main clades, with a general pattern of diversification through geographical colonization from south to north after the Pliocene uplift of the northern Andes. Adaptation to low temperatures was conserved at the generic level, with climatic niche differentiation among clades along elevational temperature gradients. We conclude that the Neogene Andean uplift has facilitated the diversification of this iconic plant group via opportunities for geographical migration and separation within its climatic niche.
机译:热带安第斯山脉是一种生物多样性热点,部分原因是他们丰富,复杂的植物组成。关于这种杰出的生物多样性的基本问题是Andean Orenteny在物种多样化中发挥的作用是什么作用。 Ceroxylon是由于其适应冷,山区环境,在棕榈家族(槟榔)中脱颖而出。在这里,我们重建了这种谱系的生物地理和气候偏好,以测试Andean Uplift允许沿着气候和高梯度的合适的栖息地进行多样化的假设。根据允许创始人的模型重建祖先的地区,从所有物种的当今发生的气候变量中推断出了气候变量。通过测试疏水性的气候龛之间的差异来评估系统发育框架中的Niche演变。我们的分析确定了四个主要的分支,通过从北部南部的南北地区到北方的地理殖民化,通过地域殖民化一般的多样化。在通用水平处保存对低温的适应,具有沿着高度温度梯度的流星的气候利基分化。我们得出结论,Neogene Andean Chrexift通过其气候利基内的地理迁移和分离的机会促进了这种标志性植物组的多样化。

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