Department of Biology, National Changhua University of Education, Changhua, Taiwan.
Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan.
Microbiol Mol Biol Rev. 2022 Dec 21;86(4):e0009822. doi: 10.1128/mmbr.00098-22. Epub 2022 Sep 13.
Understanding the molecular basis of speciation is a primary goal in evolutionary biology. The formation of the postzygotic reproductive isolation that causes hybrid dysfunction, thereby reducing gene flow between diverging populations, is crucial for speciation. Using various advanced approaches, including chromosome replacement, hybrid introgression and transcriptomics, population genomics, and experimental evolution, scientists have revealed multiple mechanisms involved in postzygotic barriers in the fungal kingdom. These results illuminate both unique and general features of fungal speciation. Our review summarizes experiments on fungi exploring how Dobzhansky-Muller incompatibility, killer meiotic drive, chromosome rearrangements, and antirecombination contribute to postzygotic reproductive isolation. We also discuss possible evolutionary forces underlying different reproductive isolation mechanisms and the potential roles of the evolutionary arms race under the Red Queen hypothesis and epigenetic divergence in speciation.
理解物种形成的分子基础是进化生物学的主要目标。合子后生殖隔离的形成导致杂种功能障碍,从而减少了正在分化的种群之间的基因流动,这对物种形成至关重要。利用包括染色体替换、杂种渐渗和转录组学、群体基因组学和实验进化在内的各种先进方法,科学家们揭示了真菌界合子后障碍中涉及的多种机制。这些结果阐明了真菌物种形成的独特和一般特征。我们的综述总结了探索 Dobzhansky-Muller 不兼容性、减数分裂驱动、染色体重排和反重组如何有助于合子后生殖隔离的真菌实验。我们还讨论了不同生殖隔离机制背后的可能进化力量,以及红皇后假设下的进化军备竞赛和表观遗传分歧在物种形成中的潜在作用。