Wellcome Centre for Human Genetics, University of Oxford, Oxford, United Kingdom.
Department of Statistics, University of Oxford, Oxford, United Kingdom.
Mol Biol Evol. 2021 Dec 9;38(12):5555-5562. doi: 10.1093/molbev/msab269.
Sterility or subfertility of male hybrid offspring is commonly observed. This phenomenon contributes to reproductive barriers between the parental populations, an early step in the process of speciation. One frequent cause of such infertility is a failure of proper chromosome pairing during male meiosis. In subspecies of the house mouse, the likelihood of successful chromosome synapsis is improved by the binding of the histone methyltransferase PRDM9 to both chromosome homologs at matching positions. Using genetic manipulation, we altered PRDM9 binding to occur more often at matched sites, and find that chromosome pairing defects can be rescued, not only in an intersubspecific cross, but also between distinct species. Using different engineered variants, we demonstrate a quantitative link between the degree of matched homolog binding, chromosome synapsis, and rescue of fertility in hybrids between Mus musculus and Mus spretus. The resulting partial restoration of fertility reveals additional mechanisms at play that act to lock-in the reproductive isolation between these two species.
雄性杂种后代的不育或不孕是常见的。这种现象导致了亲代群体之间的生殖障碍,这是物种形成过程中的早期步骤。这种不育的一个常见原因是雄性减数分裂过程中染色体配对不当。在小家鼠亚种中,组蛋白甲基转移酶 PRDM9 与匹配位置的两条染色体同源物结合,提高了成功的染色体联会的可能性。通过遗传操作,我们改变了 PRDM9 结合发生在匹配位点的频率,发现染色体配对缺陷不仅可以在亚种间杂交中得到挽救,而且可以在不同物种之间得到挽救。使用不同的工程化变体,我们证明了匹配同源物结合的程度、染色体联会以及 Mus musculus 和 Mus spretus 之间杂种生育力的挽救之间存在定量关系。生育力的部分恢复揭示了在这两个物种之间发挥作用的其他机制,这些机制起到了锁定它们之间生殖隔离的作用。