Li Wei, Wu Huaitong, Li Xiaoping, Chen Yingnan, Yin Tongming
The Key Lab of Cultivar Innovation and Germplasm Improvement of Salicaceae, College of Forestry, Nanjing Forestry University, Nanjing, 210037 China.
Hortic Res. 2020 May 1;7:64. doi: 10.1038/s41438-020-0289-1. eCollection 2020.
belongs to section in genus , which is in a different section from the willow species in which sex determination has been well studied. Studying sex determination in distantly related willow species will help to clarify whether the sexes of different willows arise through a common sex determination system. For this purpose, we generated an intraspecific full-sib F population for and constructed high-density genetic linkage maps for the crossing parents using restriction site-associated DNA sequencing and following a two-way pseudo-testcross strategy. With the established maps, the sex locus was positioned in linkage group XV only in the maternal map, and no sex linkage was detected in the paternal map. Consistent with previous findings in other willow species, our study showed that chromosome XV was the incipient sex chromosome and that females were the heterogametic sex in . Therefore, sex in this willow species is also determined through a ZW sex determination system. We further performed fine mapping in the vicinity of the sex locus with SSR markers. By comparing the physical and genetic distances for the target interval encompassing the sex determination gene confined by SSRs, severe recombination repression was revealed in the sex determination region in the female map. The recombination rate in the confined interval encompassing the sex locus was approximately eight-fold lower than the genome-wide average. This study provides critical information relevant to sex determination in .
属于属中的 组,该组与已对性别决定进行深入研究的柳树物种所在的组不同。研究远缘柳树物种的性别决定将有助于阐明不同柳树的性别是否通过共同的性别决定系统产生。为此,我们为 生成了一个种内全同胞F群体,并使用限制性位点相关DNA测序并遵循双向伪测交策略为杂交亲本构建了高密度遗传连锁图谱。利用建立的图谱,性别位点仅在母本图谱中定位在连锁群XV上,而在父本图谱中未检测到性别连锁。与之前在其他柳树物种中的发现一致,我们的研究表明,第十五号染色体是初始性染色体,并且在 中雌性是异配性别。因此,该柳树物种的性别也是通过ZW性别决定系统决定的。我们进一步用SSR标记在性别位点附近进行了精细定位。通过比较包含由SSR限定的性别决定基因的目标区间的物理距离和遗传距离,在雌性图谱的性别决定区域发现了严重的重组抑制。包含性别位点的受限区间内的重组率比全基因组平均水平低约八倍。这项研究提供了与 中性别决定相关的关键信息。