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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Macroevolutionary dynamics in environmental space and the latitudinal diversity gradient in New World birds
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Macroevolutionary dynamics in environmental space and the latitudinal diversity gradient in New World birds

机译:新世界鸟类在环境空间中的宏观进化动力学和纬度多样性梯度

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Correlations between species richness and climate suggest non-random occupation of environmental space and niche evolution through time. However, the evolutionary mechanisms involved remain unresolved. Here, we partition the occupation of environmental space into intra- and inter- clade components to differentiate a model based on pure conservation of ancestral niches with higher diversification rates in the tropics, and an adaptive radiation model based on shifts in adaptive peaks at the family level allowing occupation of temperate regions. We examined these mechanisms using within- and among-family skewness components based on centroids of 3560 New World bird species across four environmental variables. We found that the accumulation of species in the tropics is a result of both processes. The components of adaptive radiation have family level skewness of species' distributions strongly structured in space, but not phylogenetically, according to the integrated analyses of spatial filters and phylogenetic eigenvectors. Moreover, stronger radiation components were found for energy variables, which are often used to argue for direct climatic effects on diversity. Thus, the correspondence between diversity and climate may be due to the conservation of ancestral tropical niches coupled with repeated broad shifts in adaptive peaks during birds' evolutionary history more than by higher diversification rates driven by more energy in the tropics.
机译:物种丰富度与气候之间的相关性暗示环境空间的非随机占用和生态位随时间的演变。但是,涉及的进化机制仍未解决。在这里,我们将环境空间的占用分为内部和分支之间的组成部分,以区分基于热带地区具有较高多样化率的祖先生态位的纯守恒模型和基于家庭中适应性峰偏移的适应性辐射模型。允许占领温带地区的水平。我们基于3560个新世界鸟类物种的质心跨四个环境变量,使用了家庭内部和家庭之间的偏度分量研究了这些机制。我们发现,热带地区物种的积累是这两个过程的结果。根据对空间过滤器和系统发生特征向量的综合分析,适应性辐射的组成具有物种结构的家庭水平偏度,在空间上结构很强,但在系统发育上不明显。此外,人们发现能量变量的辐射分量更强,经常被用来说明气候对多样性的直接影响。因此,多样性和气候之间的对应关系可能是由于祖先的热带生态位得到保护,再加上鸟类进化史上适应性峰的反复广泛变化,而不是热带地区更多能量驱动的更高的多样化率。

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