Department of Biological Sciences, Texas Tech University, Lubbock, TX, 79409-3131, USA.
Department of Biology, West Virginia University, Morgantown, WV, 26506-6057, USA.
Heredity (Edinb). 2021 Apr;126(4):630-639. doi: 10.1038/s41437-020-00397-3. Epub 2021 Jan 28.
The development of non-recombining sex chromosomes has radical effects on the evolution of discrete sexes and sexual dimorphism. Although dioecy is rare in plants, sex chromosomes have evolved repeatedly throughout the diversification of angiosperms, and many of these sex chromosomes are relatively young compared to those found in vertebrates. In this study, we designed and used a sequence capture array to identify a novel sex-linked region (SLR) in Salix nigra, a basal species in the willow clade, and demonstrated that this species has XY heterogamety. We did not detect any genetic overlap with the previously characterized ZW SLRs in willows, which map to a different chromosome. The S. nigra SLR is characterized by strong recombination suppression across a 2 MB region and an excess of low-frequency alleles, resulting in a low Tajima's D compared to the remainder of the genome. We speculate that either a recent bottleneck in population size or factors related to positive or background selection generated this differential pattern of Tajima's D on the X and autosomes. This discovery provides insights into factors that may influence the evolution of sex chromosomes in plants and contributes to a large number of recent observations that underscore their dynamic nature.
非重组性性染色体的发展对离散性别和性二型的进化具有重大影响。尽管雌雄异株在植物中较为罕见,但性染色体在被子植物的多样化过程中已经多次进化,并且与脊椎动物相比,其中许多性染色体相对较新。在这项研究中,我们设计并使用了一种序列捕获阵列来鉴定柳树属中一个基础物种黑柳中的一个新的性连锁区(SLR),并证明该物种具有 XY 异型性。我们没有发现与柳树中先前鉴定的 ZW SLR 有任何遗传重叠,后者映射到不同的染色体上。黑柳的 SLR 特征是在 2MB 区域内强烈抑制重组,并且低频等位基因过多,导致 Tajima's D 与基因组的其余部分相比较低。我们推测,要么是种群大小的近期瓶颈,要么是与正选择或背景选择相关的因素导致了 X 和常染色体上 Tajima's D 的这种差异模式。这一发现为可能影响植物性染色体进化的因素提供了新的认识,并为最近的大量强调它们动态性质的观察结果提供了依据。