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莎草科苔草属植物染色体进化的非均匀过程

Nonuniform processes of chromosome evolution in sedges (Carex: Cyperaceae).

作者信息

Hipp Andrew L

机构信息

The Morton Arboretum, 4100 Illinois Route 53, Lisle, Illinois 60532-1293, USA.

出版信息

Evolution. 2007 Sep;61(9):2175-94. doi: 10.1111/j.1558-5646.2007.00183.x.

Abstract

Holocentric chromosomes-chromosomes that lack localized centromeres-occur in numerous unrelated clades of insects, flatworms, and angiosperms. Chromosome number changes in such organisms often result from fission and fusion events rather than polyploidy. In this study, I test the hypothesis that chromosome number evolves according to a uniform process in Carex section Ovales (Cyperaceae), the largest New World section of an angiosperm genus renowned for its chromosomal variability and species richness. I evaluate alternative models of chromosome evolution that allow for shifts in both stochastic and deterministic evolutionary processes and that quantify the rate of evolution and heritability/phylogenetic dependence of chromosome number. Estimates of Ornstein-Uhlenbeck model parameters and tree-scaling parameters in a generalized least squares framework demonstrate that (1) chromosome numbers evolve rapidly toward clade-specific stationary distributions that cannot be explained by constant variance (Brownian motion) evolutionary models, (2) chromosome evolution in the section is rapid and exhibits little phylogenetic inertia, and (3) explaining the phylogenetic pattern of chromosome numbers in the section entails inferring a shift in evolutionary dynamics at the root of a derived clade. The finding that chromosome evolution is not a uniform process in sedges provides a novel example of karyotypic orthoselection in an organism with holocentric chromosomes.

摘要

全着丝粒染色体——即缺乏定位着丝粒的染色体——出现在众多不相关的昆虫、扁虫和被子植物分支中。这类生物体中的染色体数目变化通常源于裂变和融合事件,而非多倍体。在本研究中,我检验了这样一个假说:在莎草科卵形苔草组(莎草科)中,染色体数目按照一个统一的过程进化,该组是被子植物一个新世界大组,以其染色体变异性和物种丰富度而闻名。我评估了染色体进化的替代模型,这些模型允许随机和确定性进化过程发生转变,并量化进化速率以及染色体数目的遗传力/系统发育依赖性。在广义最小二乘框架下对奥恩斯坦 - 乌伦贝克模型参数和树尺度参数的估计表明:(1)染色体数目迅速朝着特定分支的稳定分布进化,这种分布无法用恒定方差(布朗运动)进化模型来解释;(2)该组中的染色体进化迅速,且几乎没有系统发育惯性;(3)要解释该组中染色体数目的系统发育模式,需要推断在一个衍生分支根部的进化动态发生了转变。莎草中染色体进化并非统一过程这一发现,为具有全着丝粒染色体的生物体中的核型定向选择提供了一个新例子。

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