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Identifying Hidden Rate Changes in the Evolution of a Binary Morphological Character: The Evolution of Plant Habit in Campanulid Angiosperms

机译:识别二元形态特征演变中的隐性变化:桔梗被子植物习性的演变

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摘要

The growth of phylogenetic trees in scope and in size is promising from the standpoint of understanding a wide variety of evolutionary patterns and processes. With trees comprised of larger, older, and globally distributed clades, it is likely that the lability of a binary character will differ significantly among lineages, which could lead to errors in estimating transition rates and the associated inference of ancestral states. Here we develop and implement a new method for identifying different rates of evolution in a binary character along different branches of a phylogeny. We illustrate this approach by exploring the evolution of growth habit in Campanulidae, a flowering plant clade containing some 35,000 species. The distribution of woody versus herbaceous species calls into question the use of traditional models of binary character evolution. The recognition and accommodation of changes in the rate of growth form evolution in different lineages demonstrates, for the first time, a robust picture of growth form evolution across a very large, very old, and very widespread flowering plant clade.
机译:从理解各种各样的进化模式和过程的观点来看,系统发育树的范围和大小的增长是有希望的。由于树木由较大,较旧且分布全球的枝条组成,因此二元特征的不稳定性可能会在世系之间显着不同,这可能导致估计过渡速率和祖先状态的相关推断时出现错误。在这里,我们开发并实现了一种新方法,用于识别沿着系统发育的不同分支的二进制特征中不同的进化速率。我们通过探索桔梗科(一种包含约35,000种物种的开花植物进化枝)中生长习性的进化来说明这种方法。木本物种和草本物种的分布使人们质疑使用二进制特征进化的传统模型。识别和适应不同谱系中生长形式演变速率的变化,这首次显示了横跨非常大,非常古老和非常广泛的开花植物进化枝的生长形式演变的可靠图景。

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