Laboratory of Epigenetic Regulations, Institute of Molecular Genetics of the Czech Academy of Sciences, Vídenska 1083, 14220 Prague 4, Czech Republic.
Mol Biol Evol. 2024 Oct 4;41(10). doi: 10.1093/molbev/msae211.
Hybrid sterility is a reproductive isolation barrier between diverging taxa securing the early steps of speciation. Hybrid sterility is ubiquitous in the animal and plant kingdoms, but its genetic control is poorly understood. In our previous studies, we have uncovered the sterility of hybrids between musculus and domesticus subspecies of the house mouse, which is controlled by the Prdm9 gene, the X-linked Hstx2 locus, and subspecific heterozygosity for genetic background. To further investigate this form of genic-driven chromosomal sterility, we constructed a simplified hybrid sterility model within the genome of the domesticus subspecies by swapping domesticus autosomes with their homologous partners from the musculus subspecies. We show that the "sterility" allelic combination of Prdm9 and Hstx2 can be activated by a musculus/domesticus heterozygosity of as few as two autosomes, Chromosome 17 (Chr 17) and Chr 18 and is further enhanced when another heterosubspecific autosomal pair is present, whereas it has no effect on meiotic progression in the pure domesticus genome. In addition, we identify a new X-linked hybrid sterility locus, Hstx3, at the centromeric end of Chr X, which modulates the incompatibility between Prdm9 and Hstx2. These results further support our concept of chromosomal hybrid sterility based on evolutionarily accumulated divergence between homologous sequences. Based on these and previous results, we believe that future studies should include more information on the mutual recognition of homologous chromosomes at or before the first meiotic prophase in interspecific hybrids, as this may serve as a general reproductive isolation checkpoint in mice and other species.
杂种不育性是分化类群之间生殖隔离的屏障,确保了物种形成的早期步骤。杂种不育性在动物和植物界中普遍存在,但对其遗传控制知之甚少。在我们之前的研究中,我们发现了家鼠的 musculus 和 domesticus 亚种之间杂种的不育性,这种不育性由 Prdm9 基因、X 连锁的 Hstx2 基因座和亚种间遗传背景的杂合性控制。为了进一步研究这种基因驱动的染色体不育性,我们通过将 domesticus 染色体与来自 musculus 亚种的同源染色体交换,在 domesticus 亚种的基因组内构建了一个简化的杂种不育性模型。我们表明,Prdm9 和 Hstx2 的“不育”等位基因组合可以通过 musculus/domesticus 杂合性的两个染色体,即 17 号染色体(Chr 17)和 18 号染色体激活,并且当存在另一个异亚种的常染色体对时,其作用进一步增强,而在纯 domesticus 基因组中对减数分裂进程没有影响。此外,我们在 Chr X 的着丝粒末端鉴定了一个新的 X 连锁杂种不育基因座 Hstx3,它调节了 Prdm9 和 Hstx2 之间的不兼容性。这些结果进一步支持了我们基于同源序列进化积累的染色体杂种不育性的概念。基于这些和以前的结果,我们认为未来的研究应该包括更多关于种间杂种第一次减数分裂前期或之前同源染色体相互识别的信息,因为这可能是小鼠和其他物种的一般生殖隔离检查点。