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Purifying Selection Maintains Dosage-Sensitive Genes during Degeneration of the Threespine Stickleback Y Chromosome

机译:纯化选择在Threespine棘回Y染色体变性期间维持剂量敏感基因。

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摘要

Sex chromosomes are subject to unique evolutionary forces that cause suppression of recombination, leading to sequence degeneration and the formation of heteromorphic chromosome pairs (i.e., XY or ZW). Although progress has been made in characterizing the outcomes of these evolutionary processes on vertebrate sex chromosomes, it is still unclear how recombination suppression and sequence divergence typically occur and how gene dosage imbalances are resolved in the heterogametic sex. The threespine stickleback fish (Gasterosteus aculeatus) is a powerful model system to explore vertebrate sex chromosome evolution, as it possesses an XY sex chromosome pair at relatively early stages of differentiation. Using a combination of whole-genome and transcriptome sequencing, we characterized sequence evolution and gene expression across the sex chromosomes. We uncovered two distinct evolutionary strata that correspond with known structural rearrangements on the Y chromosome. In the oldest stratum, only a handful of genes remain, and these genes are under strong purifying selection. By comparing sex-linked gene expression with expression of autosomal orthologs in an outgroup, we show that dosage compensation has not evolved in threespine sticklebacks through upregulation of the X chromosome in males. Instead, in the oldest stratum, the genes that still possess a Y chromosome allele are enriched for genes predicted to be dosage sensitive in mammals and yeast. Our results suggest that dosage imbalances may have been avoided at haploinsufficient genes by retaining function of the Y chromosome allele through strong purifying selection.
机译:性染色体受到独特的进化力的作用,导致重组的抑制,导致序列变性和异形染色体对(即XY或ZW)的形成。尽管已经在表征脊椎动物性染色体上这些进化过程的结果方面取得了进展,但仍不清楚重组抑制和序列差异通常是如何发生的以及异配子性如何解决基因剂量失衡的问题。三脊刺背鱼(Gasterosteus aculeatus)是探索脊椎动物性染色体进化的强大模型系统,因为它在分化的相对早期具有XY性染色体对。使用全基因组和转录组测序的组合,我们表征了跨性染色体的序列进化和基因表达。我们发现了两个与Y染色体上已知结构重排相对应的不同进化层。在最古老的阶层中,只剩下少数基因,并且这些基因处于强大的纯化选择之下。通过将性别相关基因的表达与常染色体直系同源基因的表达进行比较,我们发现男性的X染色体上调在三脊刺背棘中未发生剂量补偿。取而代之的是,在最古老的阶层中,仍然拥有Y染色体等位基因的基因富含预测在哺乳动物和酵母中具有剂量敏感性的基因。我们的结果表明,通过强有力的纯化选择,通过保持Y染色体等位基因的功能,可以避免单倍型基因的剂量失衡。

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