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The origin and evolution of human ampliconic gene families and ampliconic structure

机译:人类两性基因家族和两性结构的起源与进化

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摘要

Out of the nine male-specific gene families in the human Y chromosome amplicons, we investigate the origin and evolution of seven families for which gametologous and orthologous sequences are available. Proto-X/Y gene pairs in the original mammalian sex chromosomes played major roles in origins and gave rise to five gene families: XKRY, VCY, HSFY, RBMY, and TSPY. The divergence times between gametologous X- and Y-linked copies in these families are well correlated with the former X-chromosomal locations. The CDY and DAZ families originated exceptionally by retroposition and transposition of autosomal copies, respectively, but CDY possesses an X-linked copy of enigmatic origin. We also investigate the evolutionary relatedness among Y-linked copies of a gene family in light of their ampliconic locations (palindromes, inverted repeats, and the TSPY array). Although any pair of copies located at the same arm positions within a palindrome is identical or nearly so by frequent gene conversion, copies located at different arm positions are distinctively different. Since these and other distinct copies in various gene families were amplified almost simultaneously in the stem lineage of Catarrhini, we take these simultaneous amplifications as evidence for the elaborate formation of Y ampliconic structure. Curiously, some copies in a gene family located at different palindromes exhibit high sequence similarity, and in most cases, such similarity greatly extends to repeat units that harbor these copies. It appears that such palindromic repeat units have evolved by and large en bloc, but they have undergone frequent exchanges between palindromes.
机译:在人类Y染色体扩增子的9个男性特异性基因家族中,我们调查了7个家族的起源和进化,这7个家族的配子同源序列和直系同源序列均可用。原始哺乳动物性染色体中的Proto-X / Y基因对在起源中起主要作用,并产生了五个基因家族:XKRY,VCY,HSFY,RBMY和TSPY。在这些家族中,配子X和Y连锁的拷贝之间的差异时间与以前的X染色体位置密切相关。 CDY和DAZ家族分别起源于常染色体拷贝的逆转录和转座,但CDY具有X连锁的神秘起源拷贝。我们还研究了根据其两亲位置(回文,反向重复和TSPY阵列)在基因家族的Y连锁拷贝之间的进化相关性。尽管通过频繁的基因转换,位于回文中相同臂位置的任何一对拷贝都是相同或几乎相同,但是位于不同臂位置的拷贝却截然不同。由于这些基因家族中的这些以及其他不同的拷贝在卡塔尼尼的茎谱系中几乎同时被扩增,因此我们将这些同时的扩增作为Y ampliconic结构的精心形成的证据。奇怪的是,位于不同回文集中的基因家族中的某些拷贝显示出很高的序列相似性,并且在大多数情况下,这种相似性大大扩展到包含这些拷贝的重复单元。看来这种回文重复单元已经大体上进化了,但是它们在回文之间频繁地交换。

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