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首页> 外文期刊>Journal of Zoological Systematics and Evolutionary Research >Integrating phylogeny, environment and space to explore variation in macroecological traits of Viperidae and Elapidae (Squamata: Serpentes)
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Integrating phylogeny, environment and space to explore variation in macroecological traits of Viperidae and Elapidae (Squamata: Serpentes)

机译:整合系统发育,环境和空间以探索Vi蛇科和蛇蝎科(鳞茎:蛇)的宏观生态特征的变异

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We used eigenvector mapping in space and phylogeny to investigate the relationships among space, phylogeny and environment on body size and range size variation across two groups of venomous snakes Viperidae and Elapidae from the New World. Data on species geographic range sizes, maximum body sizes and phylogenetic relationships were compiled from the available literature. The distributional data were also used to calculate the latitudinal and longitudinal midpoint and the environmental centroids for each species. The eigenvectors extracted from the pair wise spatial and phylogenetic distance matrices were integrated with environmental variables into a method of variation partitioning where the variation in each trait was quantitatively attributed to pure and/or shared effects of phylogeny, environment and space. Our results showed that variation in body size was predominantly determined by phylogeny in both groups of snakes. For Viperidae, we found that pure effects of phylogeny were the strongest, indicating that most of the body size evolution that was phylogenetically determined in this group occurred independently of environment and geographical proximity. Regarding range sizes, pure phylogenetic influences were very low in both groups, whereas the largest single fraction of explained variation corresponded to overlapped influences of the three sets of predictors, especially for Elapidae. Along with this, we found evidence that niche conservatism is an important processes underlying variation in body size and range size in both groups of snakes.
机译:我们使用空间和系统发育中的特征向量映射研究了来自新大陆的两组毒蛇毒蛇科和蛇形科的空间,系统发育和环境之间的关系,它们与体型和范围大小变化之间的关系。从现有文献中收集了有关物种地理范围大小,最大体型和系统发育关系的数据。分布数据还用于计算每个物种的经纬度和纵向中点以及环境质心。从成对的空间和系统发育距离矩阵中提取的特征向量与环境变量集成到一种变异划分方法中,其中每个性状的变异在数量上归因于系统发育,环境和空间的纯净和/或共享作用。我们的结果表明,两组蛇的体型差异主要由系统发育决定。对于蛇蝎科,我们发现系统发育的纯作用最强,这表明该组在系统发育上确定的大多数体型进化均独立于环境和地理上的邻近性而发生。关于范围大小,两组的纯系统发育影响都非常低,而所解释变异的最大单个部分对应于三组预测因子的重叠影响,尤其是对天牛科。同时,我们发现有证据表明,利基保守性是构成两组蛇体大小和范围大小变化的重要过程。

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