首页> 外文期刊>PLoS Genetics >A Genome-Wide Analysis Reveals No Nuclear Dobzhansky-Muller Pairs of Determinants of Speciation between S. cerevisiae and S. paradoxus , but Suggests More Complex Incompatibilities
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A Genome-Wide Analysis Reveals No Nuclear Dobzhansky-Muller Pairs of Determinants of Speciation between S. cerevisiae and S. paradoxus , but Suggests More Complex Incompatibilities

机译:全基因组分析显示酿酒酵母和悖论链球菌的形态没有决定因素的核Dobzhansky-Muller对,但表明存在更复杂的不相容性

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The Dobzhansky-Muller (D-M) model of speciation by genic incompatibility is widely accepted as the primary cause of interspecific postzygotic isolation. Since the introduction of this model, there have been theoretical and experimental data supporting the existence of such incompatibilities. However, speciation genes have been largely elusive, with only a handful of candidate genes identified in a few organisms. The Saccharomyces sensu stricto yeasts, which have small genomes and can mate interspecifically to produce sterile hybrids, are thus an ideal model for studying postzygotic isolation. Among them, only a single D-M pair, comprising a mitochondrially targeted product of a nuclear gene and a mitochondrially encoded locus, has been found. Thus far, no D-M pair of nuclear genes has been identified between any sensu stricto yeasts. We report here the first detailed genome-wide analysis of rare meiotic products from an otherwise sterile hybrid and show that no classic D-M pairs of speciation genes exist between the nuclear genomes of the closely related yeasts S. cerevisiae and S. paradoxus. Instead, our analyses suggest that more complex interactions, likely involving multiple loci having weak effects, may be responsible for their post-zygotic separation. The lack of a nuclear encoded classic D-M pair between these two yeasts, yet the existence of multiple loci that may each exert a small effect through complex interactions suggests that initial speciation events might not always be mediated by D-M pairs. An alternative explanation may be that the accumulation of polymorphisms leads to gamete inviability due to the activities of anti-recombination mechanisms and/or incompatibilities between the species' transcriptional and metabolic networks, with no single pair at least initially being responsible for the incompatibility. After such a speciation event, it is possible that one or more D-M pairs might subsequently arise following isolation.
机译:通过基因不相容性形成物种的Dobzhansky-Muller(D-M)模型被广泛认为是种间合子后分离的主要原因。自从引入该模型以来,已有理论和实验数据支持这种不兼容的存在。然而,物种形成基因在很大程度上难以捉摸,在少数生物中仅鉴定出少数候选基因。因此,具有微小基因组并且可以种间交配以产生无菌杂种的Saccharomyces sensu stricto酵母是研究合子后分离的理想模型。其中,仅发现了一个D-M对,其包含核基因的线粒体靶向产物和线粒体编码的基因座。迄今为止,还没有在任何严格的酵母之间鉴定出D-M对核基因。我们在这里报告了来自其他方式不育的杂种的稀有减数分裂产物的第一个详细的全基因组分析,结果表明紧密相关的酵母S. cerevisiae和S. paradoxus的核基因组之间不存在经典的D-M对物种形成基因。相反,我们的分析表明,更复杂的相互作用(可能涉及多个作用较弱的基因座)可能是其合子后分离的原因。这两个酵母之间缺乏核编码的经典D-M对,但是可能通过复杂的相互作用各自发挥较小作用的多个基因座的存在表明,最初的物种形成事件可能并不总是由D-M对介导。另一种解释可能是,由于抗重组机制的活动和/或物种的转录和代谢网络之间的不相容性,多态性的积累导致配子不可生存,而没有任何一对至少起初负责该不相容性。在发生这种事件之后,隔离后可能会随后出现一个或多个D-M对。

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