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A W-linked palindrome and gene conversion in New World sparrows and blackbirds.

机译:W连锁回文和新大陆麻雀和黑鸟的基因转换。

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A hallmark feature of the male-specific region of the human Y chromosome is the presence of large and near-identical palindromes. These palindromes are maintained in a state of near identity via gene conversion between the arms of the palindrome, and both neutral and selection-based theories have been proposed to explain their enrichment on the human Y and X chromosomes. While those proposed theories would be applicable to sex chromosomes in other species, it has not been established whether near-identical palindromes are a common feature of sex chromosomes in a broader range of taxa, including other tetrapods. Here, we report the genomic sequencing and features of a 279-kb region of the non-recombining portion of the W chromosome spanning the CHD1W locus in a New World sparrow, the white-throated sparrow (Zonotrichia albicollis), and the corresponding region on the Z chromosome. As has been observed for other Y and W chromosomes, we detected a high repetitive element content (51%) and low gene content on the white-throated sparrow W chromosome. In addition, we identified a 22-kb near-identical (>99%) palindrome on the W chromosome that flanks the 5' end of the CHD1W gene. Signatures of gene conversion were readily detected between the arms of this palindrome, as was the presence of this palindrome in other New World sparrows and blackbirds. Near-identical palindromes are therefore present on the avian W chromosome and may persist due to the same forces proposed for the enrichment of these elements on the human sex chromosomes.
机译:人类Y染色体男性特定区域的标志性特征是存在大量且几乎相同的回文。通过在回文的两臂之间进行基因转换,将这些回文保持在几乎相同的状态,并且已经提出了中性和基于选择的理论来解释它们在人Y和X染色体上的富集。尽管那些提出的理论将适用于其他物种的性染色体,但尚未确定近乎相同的回文序列是否是包括其他四足动物在内的更广泛种类群中性染色体的共同特征。在这里,我们报道了跨越新大陆麻雀,白喉麻雀(Zonotrichia albicollis)中CHD1W基因座的W染色体非重组部分279kb区域的基因组测序和特征。 Z染色体。正如其他Y和W染色体所观察到的,我们在白喉麻雀W染色体上检测到高重复元素含量(51%)和低基因含量。另外,我们在W染色体的CHD1W基因5'端侧翼上发现了一个22 kb几乎相同(> 99%)的回文。该回文的两臂之间很容易检测到基因转换的签名,其他新世界麻雀和黑鸟中也存在这种回文。因此,禽类W染色体上存在几乎完全相同的回文,并且由于与人类性染色体上的这些元素富集有关的相同作用力而可能持续存在。

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