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The effects of haploid selection on Y chromosome evolution in two closely related dioecious plants

机译:单倍体选择对两种近缘雌雄异株植物Y染色体进化的影响

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摘要

The evolution of sex chromosomes is usually considered to be driven by sexually antagonistic selection in the diploid phase. However, selection during the haploid gametic phase of the lifecycle has recently received theoretical attention as possibly playing a central role in sex chromosome evolution, especially in plants where gene expression in the haploid phase is extensive. In particular, male‐specific haploid selection might favor the linkage of pollen beneficial alleles to male sex determining regions on incipient Y chromosomes. This linkage might then allow such alleles to further specialize for the haploid phase. Purifying haploid selection is also expected to slow the degeneration of Y‐linked genes expressed in the haploid phase. Here, we examine the evolution of gene expression in flower buds and pollen of two species of Rumex to test for signatures of haploid selection acting during plant sex chromosome evolution. We find that genes with high ancestral pollen expression bias occur more often on sex chromosomes than autosomes and that genes on the Y chromosome are more likely to become enriched for pollen expression bias. We also find that genes with low expression in pollen are more likely to be lost from the Y chromosome. Our results suggest that sex‐specific haploid selection during the gametophytic stage of the lifecycle may be a major contributor to several features of plant sex chromosome evolution.
机译:通常认为性染色体的进化是由二倍体相中的性拮抗选择驱动的。然而,在生命周期的单倍体配子阶段进行选择最近已受到理论关注,因为它可能在性染色体进化中起着重要作用,尤其是在单倍体阶段基因表达广泛的植物中。特别是,针对男性的单倍体选择可能更有利于将花粉有益等位基因与初始Y染色体上的男性决定区域联系起来。然后,这种连接可能使这些等位基因进一步专一化为单倍体阶段。纯化单倍体选择也有望减缓单倍体阶段表达的Y连锁基因的变性。在这里,我们检查了两种Rumex的花蕾和花粉中基因表达的演变,以测试在植物性染色体进化过程中起作用的单倍体选择的特征。我们发现,具有较高祖先花粉表达偏向的基因在性染色体上比常染色体更常见,并且在Y染色体上的基因更可能因花粉表达偏向而变得富集。我们还发现,在花粉中低表达的基因更有可能从Y染色体上丢失。我们的结果表明,在生命周期的配子体阶段,特定性别的单倍体选择可能是植物性染色体进化的几个特征的主要贡献者。

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