首页> 外文期刊>Evolution: International Journal of Organic Evolution >No substitute for real data: A cautionary note on the use of phylogenies from birth-death polytomy resolvers for downstream comparative analyses
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No substitute for real data: A cautionary note on the use of phylogenies from birth-death polytomy resolvers for downstream comparative analyses

机译:不能替代真实数据:关于使用出生死亡多切线解析器的系统发育进行下游比较分析的警告说明

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摘要

The statistical estimation of phylogenies is always associated with uncertainty, and accommodating this uncertainty is an important component of modern phylogenetic comparative analysis. The birth-death polytomy resolver is a method of accounting for phylogenetic uncertainty that places missing (unsampled) taxa onto phylogenetic trees, using taxonomic information alone. Recent studies of birds and mammals have used this approach to generate pseudoposterior distributions of phylogenetic trees that are complete at the species level, even in the absence of genetic data for many species. Many researchers have used these distributions of phylogenies for downstream evolutionary analyses that involve inferences on phenotypic evolution, geography, and community assembly. I demonstrate that the use of phylogenies constructed in this fashion is inappropriate for many questions involving traits. Because species are placed on trees at random with respect to trait values, the birth-death polytomy resolver breaks down natural patterns of trait phylogenetic structure. Inferences based on these trees are predictably and often drastically biased in a direction that depends on the underlying (true) pattern of phylogenetic structure in traits. I illustrate the severity of the phenomenon for both continuous and discrete traits using examples from a global bird phylogeny.
机译:系统发育的统计估计总是与不确定性相关联,适应这种不确定性是现代系统发育比较分析的重要组成部分。出生死亡多解剖体解析器是一种系统发育不确定性的解决方法,该方法仅使用分类信息即可将缺失的(未采样)分类单元放到系统发育树上。鸟类和哺乳动物的最新研究已使用这种方法来生成系统发育树的假后分布,即使在没有许多物种遗传数据的情况下,它们在物种水平上也是完整的。许多研究人员已将系统发育的这些分布用于下游进化分析,涉及对表型进化,地理和群落组装的推断。我证明以这种方式构建的系统发育对于许多涉及性状的问题都是不合适的。因为就特征值而言,物种是随机放置在树上的,所以生死多角体分解器会破坏特征系统发育结构的自然模式。基于这些树的推论在一个方向上是可预测的,并且经常是严重偏向于一个方向,该方向取决于特征中系统发育结构的基本(真实)模式。我使用全球鸟类系统发育的例子说明了连续性和离散性状的现象的严重性。

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