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Species-specific shifts in centromere sequence composition are coincident with breakpoint reuse in karyotypically divergent lineages

机译:着丝粒序列组成的物种特异性变化与核型趋异谱系中的断点重用相吻合

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摘要

BackgroundIt has been hypothesized that rapid divergence in centromere sequences accompanies rapid karyotypic change during speciation. However, the reuse of breakpoints coincident with centromeres in the evolution of divergent karyotypes poses a potential paradox. In distantly related species where the same centromere breakpoints are used in the independent derivation of karyotypes, centromere-specific sequences may undergo convergent evolution rather than rapid sequence divergence. To determine whether centromere sequence composition follows the phylogenetic history of species evolution or patterns of convergent breakpoint reuse through chromosome evolution, we examined the phylogenetic trajectory of centromere sequences within a group of karyotypically diverse mammals, macropodine marsupials (wallabies, wallaroos and kangaroos).
机译:背景已经假设着丝粒序列的快速差异伴随着物种形成过程中快速的核型变化。但是,在不同的核型进化过程中,与着丝点同时发生的断点重用构成了潜在的悖论。在将相同着丝粒断点用于核型独立推导的远缘物种中,着丝粒特异性序列可能会发生趋同进化,而不是快速的序列发散。为了确定着丝粒序列的组成是否遵循物种进化的系统进化史或通过染色体进化产生的聚合断点重用模式,我们检查了一组核型不同的哺乳动物,大型有袋动物(袋鼠,长尾小袋鼠和袋鼠)中着丝粒序列的系统发生轨迹。

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