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雌雄异株植物中的重组景观二态性和性染色体进化。

Recombination landscape dimorphism and sex chromosome evolution in the dioecious plant .

机构信息

Department of Ecology and Evolutionary Biology, University of Toronto, Toronto, ON, Canada M5S 3B2.

Department of Biology, Queen's University, Kingston, ON, Canada K7L 396.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2022 May 9;377(1850):20210226. doi: 10.1098/rstb.2021.0226. Epub 2022 Mar 21.

Abstract

There is growing evidence from diverse taxa for sex differences in the genomic landscape of recombination, but the causes and consequences of these differences remain poorly understood. Strong recombination landscape dimorphism between the sexes could have important implications for the dynamics of sex chromosome evolution because low recombination in the heterogametic sex can favour the spread of sexually antagonistic alleles. Here, we present a sex-specific linkage map and revised genome assembly of and provide the first evidence and characterization of sex differences in recombination landscape in a dioecious plant. We present data on significant sex differences in recombination, with regions of very low recombination in males covering over half of the genome. This pattern is evident on both sex chromosomes and autosomes, suggesting that pre-existing differences in recombination may have contributed to sex chromosome formation and divergence. Our analysis of segregation distortion suggests that haploid selection due to pollen competition occurs disproportionately in regions with low male recombination. We hypothesize that sex differences in the recombination landscape have contributed to the formation of a large heteromorphic pair of sex chromosomes in , but more comparative analyses of recombination will be important to investigate this hypothesis further. This article is part of the theme issue 'Sex determination and sex chromosome evolution in land plants'.

摘要

越来越多的证据表明,在不同的分类群中,重组的基因组景观存在性别差异,但这些差异的原因和后果仍知之甚少。雌雄之间强烈的重组景观二态性可能对性染色体进化的动态具有重要意义,因为异配性别中的低重组可以促进性拮抗等位基因的传播。在这里,我们呈现了 和 的性别的连锁图谱和修订的基因组组装,并提供了在雌雄异株植物中重组景观存在性别差异的首个证据和特征描述。我们提供了关于重组存在显著性别差异的数据,在雄性中,极低重组区域覆盖了基因组的一半以上。这种模式在性染色体和常染色体上都很明显,这表明重组的预先存在的差异可能促成了性染色体的形成和分化。我们对分离扭曲的分析表明,由于花粉竞争导致的单倍体选择在低雄性重组区域不成比例地发生。我们假设重组景观的性别差异促成了 的大的异型性染色体对的形成,但更多的重组比较分析对于进一步研究这一假设很重要。本文是主题为“陆地植物的性别决定和性染色体进化”的特刊的一部分。

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