Hou Jing, Fournier Téo, Schacherer Joseph
Department of Genetics, Genomics and Microbiology, University of Strasbourg/CNRS UMR 7156, Strasbourg, France.
Department of Genetics, Genomics and Microbiology, University of Strasbourg/CNRS UMR 7156, Strasbourg, France
FEMS Yeast Res. 2016 Aug;16(5). doi: 10.1093/femsyr/fow048. Epub 2016 Jun 9.
Exploring the origin and extent of reproductive isolation within the same species is valuable to capture early events to the onset of speciation. In multiple genetic models, reproductive isolation was recently observed at the intraspecific scale, indicating that the raw potential for speciation segregates readily within populations, which could be a rule rather than an exception in a broad context. We briefly recapitulate the molecular evidence of intrinsic post-zygotic isolation in major model organisms including Arabidopsis thaliana, Caenorhabditis elegans, Drosophila melanogaster and their close relatives. We then focus on recent advances in yeast and review the genetic basis of post-zygotic isolation within and between multiple members of the Saccharomyces genus, especially in Saccharomyces cerevisiae We discuss the role of various mechanisms involved in the onset of reproductive isolation including DNA sequence divergence, chromosomal rearrangement, cytonuclear as well as nuclear-nuclear genetic incompatibilities and provide a comparative view along a continuum of genetic differentiation, which encompasses intraspecific populations, recent delineating nascent species as well as closely related sister species in the same subphylum.
探索同一物种内生殖隔离的起源和程度,对于捕捉物种形成初期的事件具有重要价值。在多个遗传模型中,最近在种内尺度上观察到了生殖隔离,这表明物种形成的原始潜力在种群中很容易分离,在更广泛的背景下,这可能是一种普遍规律而非例外。我们简要概括了主要模式生物,包括拟南芥、秀丽隐杆线虫、黑腹果蝇及其近缘物种中内在合子后隔离的分子证据。然后,我们聚焦于酵母的最新进展,并回顾酿酒酵母属多个成员内部以及之间合子后隔离的遗传基础,特别是在酿酒酵母中。我们讨论了参与生殖隔离起始的各种机制的作用,包括DNA序列差异、染色体重排、细胞质-细胞核以及细胞核-细胞核遗传不相容性,并沿着遗传分化的连续统一体提供了一个比较视角,该连续统一体涵盖种内种群、最近分化的新物种以及同一亚门中的近缘姊妹物种。