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The Human Hox-bearing Chromosome Regions Did Arise by Block or Chromosome (or Even Genome) Duplications

机译:人类携带Hox的染色体区域确实是通过重复或染色体(甚至是基因组)重复出现的

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摘要

Many chromosome regions in the human genome exist in four similar copies, suggesting that the entire genome was duplicated twice in early vertebrate evolution, a concept called the 2R hypothesis. Forty-two gene families on the four Hox-bearing chromosomes were recently analyzed by others, and 32 of these were reported to have evolutionary histories incompatible with duplications concomitant with the Hox clusters, thereby contradicting the 2R hypothesis. However, we show here that nine of the families have probably been translocated to the Hox-bearing chromosomes more recently, and that three of these belong to other chromosome quartets where they actually support the 2R hypothesis. We consider 13 families too complex to shed light on the chromosome duplication hypothesis. Among the remaining 20 families, 14 display phylogenies that support or are at least consistent with the Hox-cluster duplications. Only six families seem to have other phylogenies, but these trees are highly uncertain due to shortage of sequence information. We conclude that all relevant and analyzable families support or are consistent with block/chromosome duplications and that none clearly contradicts the 2R hypothesis.
机译:人类基因组中的许多染色体区域以四个相似的副本存在,这表明整个基因组在早期脊椎动物进化中被复制了两次,这一概念称为2R假设。最近,其他人分析了四个带有Hox的染色体上的42个基因家族,据报道其中32个具有与Hox簇伴随的重复不兼容的进化历史,从而与2R假设相矛盾。但是,我们在这里显示,其中有9个科目最近可能已经转移到了带有Hox的染色体上,其中3个属于其他染色体四重奏,它们实际上支持2R假设。我们认为13个家庭过于复杂,无法阐明染色体复制假说。在其余的20个科中,有14个系统发育支持或至少与Hox集群重复一致。似乎只有六个科系具有其他系统发育史,但是由于缺乏序列信息,这些树的不确定性很高。我们得出的结论是,所有相关且可分析的家族均支持或与嵌段/染色体重复一致,并且没有一个与2R假设明显矛盾。

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