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Recent sex chromosome divergence despite ancient dioecy in the willow Salix viminalis.

机译:最近的性染色体分歧尽管在杨柳salix viminalis中古老的雌雄异体。

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摘要

Sex chromosomes can evolve when recombination is halted between a pair of chromosomes, and this can lead to degeneration of the sex-limited chromosome. In the early stages of differentiation sex chromosomes are homomorphic, and even though homomorphic sex chromosomes are very common throughout animals and plants, we know little about the evolutionary forces shaping these types of sex chromosomes. We used DNA- and RNA-Seq data from females and males to explore the sex chromosomes in the female heterogametic willow, Salix viminalis, a species with ancient dioecy but with homomorphic sex chromosomes. We detected no major sex differences in read coverage in the SD region, indicating that the W region has not significantly degenerated. However, SNP densities in the SD region are higher in females compared to males, indicating very recent recombination suppression, followed by the accumulation of sex-specific SNPs. Interestingly, we identified two female-specific scaffolds that likely represent W-chromosome-specific sequence. We show that genes located in the SD region display a mild excess of male-biased expression in sex-specific tissue, and we use allele-specific gene expression analysis to show that this is the result of masculinization of expression on the Z chromosome rather than degeneration of female-expression on the W chromosome. Together, our results demonstrate that insertion of small DNA fragments and accumulation of sex-biased gene expression can occur before the detectable decay of the sex-limited chromosome.
机译:当一对染色体之间的重组停止时,性染色体会进化,这可能导致性别受限的染色体变性。在分化的早期,性染色体是同态的,即使同态性染色体在动植物中非常普遍,我们对形成这类性染色体的进化力知之甚少。我们使用来自雌性和雄性的DNA和RNA-Seq数据探索雌性杂配柳树柳柳(Salix viminalis)中的性染色体,柳柳具有古老的雌雄同体但具有同型性染色体。我们在SD区域的阅读覆盖率中未发现主要性别差异,这表明W区域并没有明显退化。然而,与男性相比,女性SD区的SNP密度更高,这表明最近重组受到抑制,随后是性别特异性SNP的积累。有趣的是,我们鉴定了两个女性特异性支架,它们可能代表W染色体特异性序列。我们显示位于SD区的基因在性别特异性组织中显示出男性偏向表达的轻度过量,并且我们使用等位基因特异性基因表达分析来显示这是Z染色体上男性化表达的结果,而不是W染色体上女性表达的变性。总之,我们的结果表明,在可检测到的性别有限的染色体衰变之前,可能会出现小的DNA片段的插入和性别偏向的基因表达的积累。

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