Laboratory Animal Science, Doctoral Program in Medical Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki, 305-8575, Japan.
Laboratory Animal Science, Bachelor of Medical Science, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki, 305-8575, Japan.
Sci Rep. 2020 Jun 3;10(1):9060. doi: 10.1038/s41598-020-65986-y.
F1 hybrid progenies between related subspecies often show hybrid sterility (HS) or inviability. HS is caused by failure of meiotic chromosome synapsis and sex body formation in house mouse. Previous studies identified two HS critical genomic regions named Hstx2 on Chr X and Hst1 on Chr 17 by murine forward genetic approaches. HS gene on Hst1 was reported to be Prdm9. Intersubspecific polymorphisms of Prdm9 induce HS in hybrids, and Prdm9 null mutation leads to sterility in the inbred strain. However, HS gene on Hstx2 remains unknown. Here, using knock-out studies, we showed that HS candidate genes on Hstx2 are not individually essential for spermatogenesis in B6 strain. We examined 12 genes on Hstx2: Ctag2, 4930447F04Rik, Mir743, Mir465d, Mir465c-2, Mir465b-1, Mir465c-1, Mir465, Gm1140, Gm14692, 4933436I01Rik, and Gm6812. These genes were expressed in adult testes, and showed intersubspecific polymorphisms on expressed regions. This first reverse genetic approach to identify HS gene on Hstx2 suggested that the loss of function of any one HS candidate gene does not cause complete sterility, unlike Prdm9. Thus, the mechanism(s) of HS by the HS gene on Hstx2 might be different from that of Prdm9.
F1 杂种后代通常表现出杂种不育(HS)或不能存活。在小家鼠中,HS 是由减数分裂染色体联会和性体形成失败引起的。以前的研究通过鼠类正向遗传学方法确定了两个 HS 关键基因组区域,分别命名为 Chr X 上的 Hstx2 和 Chr 17 上的 Hst1。Hst1 上的 HS 基因被报道为 Prdm9。Prdm9 的种间多态性诱导杂种中的 HS,而 Prdm9 缺失突变导致近交系不育。然而,Hstx2 上的 HS 基因仍然未知。在这里,我们通过敲除研究表明,B6 品系精子发生中 Hstx2 上的 HS 候选基因不是单独必需的。我们检查了 Hstx2 上的 12 个基因:Ctag2、4930447F04Rik、Mir743、Mir465d、Mir465c-2、Mir465b-1、Mir465c-1、Mir465、Gm1140、Gm14692、4933436I01Rik 和 Gm6812。这些基因在成年睾丸中表达,并在表达区域显示出种间多态性。这是首次通过反向遗传学方法鉴定 Hstx2 上的 HS 基因,表明与 Prdm9 不同,任何一个 HS 候选基因的功能丧失都不会导致完全不育。因此,Hstx2 上的 HS 基因引起 HS 的机制可能与 Prdm9 不同。