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植物属大麻和葎草共有一对分化良好的性染色体。

Plant genera Cannabis and Humulus share the same pair of well-differentiated sex chromosomes.

机构信息

Laboratoire de Biométrie et Biologie Evolutive, UMR 5558, Université de Lyon, Université Lyon 1, CNRS, Villeurbanne, F-69622, France.

Department of Agronomy, Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, Ljubljana, SI-1000, Slovenia.

出版信息

New Phytol. 2021 Aug;231(4):1599-1611. doi: 10.1111/nph.17456. Epub 2021 Jun 16.

Abstract

We recently described, in Cannabis sativa, the oldest sex chromosome system documented so far in plants (12-28 Myr old). Based on the estimated age, we predicted that it should be shared by its sister genus Humulus, which is known also to possess XY chromosomes. Here, we used transcriptome sequencing of an F family of H. lupulus to identify and study the sex chromosomes in this species using the probabilistic method SEX-DETector. We identified 265 sex-linked genes in H. lupulus, which preferentially mapped to the C. sativa X chromosome. Using phylogenies of sex-linked genes, we showed that a region of the sex chromosomes had already stopped recombining in an ancestor of both species. Furthermore, as in C. sativa, Y-linked gene expression reduction is correlated to the position on the X chromosome, and highly Y degenerated genes showed dosage compensation. We report, for the first time in Angiosperms, a sex chromosome system that is shared by two different genera. Thus, recombination suppression started at least 21-25 Myr ago, and then (either gradually or step-wise) spread to a large part of the sex chromosomes (c. 70%), leading to a degenerated Y chromosome.

摘要

我们最近在大麻属中描述了迄今为止在植物中记录到的最古老的性染色体系统(12-28 Myr 龄)。根据估计的年龄,我们预测它应该与它的姐妹属葎草属共有,葎草属也已知拥有 XY 染色体。在这里,我们使用 H. lupulus 的 F 家族的转录组测序,使用概率方法 SEX-DETector 来鉴定和研究该物种的性染色体。我们在 H. lupulus 中鉴定了 265 个性连锁基因,这些基因优先映射到 C. sativa 的 X 染色体上。使用性连锁基因的系统发育,我们表明,两个物种的祖先中,性染色体的一个区域已经停止重组。此外,与大麻属一样,Y 连锁基因表达的减少与 X 染色体上的位置相关,高度 Y 退化的基因显示出剂量补偿。我们首次在被子植物中报告了两个不同属共享的性染色体系统。因此,重组抑制至少在 21-25 Myr 前开始,然后(逐渐或逐步)扩散到大部分性染色体(约 70%),导致 Y 染色体退化。

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