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Climatic Niche Dynamics and Its Role in the Insular Endemism of Anolis Lizards

机译:气候生态位动态及其在蜥蜴岛特有性中的作用

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Insular systems are usually characterized by have a high species diversity, endemism, and evolutionary uniqueness. Although ecological and evolutionary factors shaping insular diversity and endemism are relatively well established, there is a little understanding about climatic niche dynamics for many insular adaptive radiations. Here, we evaluate the tempo and mode of climatic niche evolution in an iconic insular radiation of lizards. By using an extensive dataset of phylogenetic and coarse-grain climatic niches, we evaluated phylogenetic niche divergence and niche conservatism across temporal and spatial scales in the Caribbean Anolis lizard radiation. We found several instances of niche shifts during the anole radiation across islands. Many of these niche shifts converged to similar climatic regimes between different islands. Furthermore, we find evidence that single-island endemic species are more limited by low suitability of climatic conditions outside its native islands than oceanic barriers due to the high climatic heterogeneity observed at least between Greater Antillean islands. These results suggest that within-lineage climatic niche conservatism has been prevalent in short time scales and likely played a role driving the exceptional insular endemism observed today.
机译:岛屿系统通常具有高度的物种多样性、特有性和进化独特性。尽管塑造岛屿多样性和特有性的生态和进化因素相对成熟,但对许多岛屿适应性辐射的气候生态位动态知之甚少。在这里,我们评估了蜥蜴标志性岛屿辐射中气候生态位进化的节奏和模式。通过使用广泛的系统发育和粗粒气候生态位数据集,我们评估了加勒比海阿诺利斯蜥蜴辐射在时间和空间尺度上的系统发育生态位分化和生态位保守性。我们发现了几个跨岛屿的生态位转移实例。这些生态位转移中的许多都汇聚到不同岛屿之间的相似气候状态。此外,我们发现有证据表明,由于至少在大安的列斯群岛之间观察到的高度气候异质性,单岛特有物种更多地受到其原生岛屿外气候条件适宜性低的限制,而不是海洋屏障。这些结果表明,谱系内气候生态位保守主义在短时间尺度上一直很普遍,并且可能在推动今天观察到的特殊岛屿特有性方面发挥了作用。

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