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Multiple rounds of speciation associated with reciprocal gene loss in polyploid yeasts.

机译:多倍体形成与多倍体酵母中相互的基因损失有关。

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摘要

A whole-genome duplication occurred in a shared ancestor of the yeast species Saccharomyces cerevisiae, Saccharomyces castellii and Candida glabrata. Here we trace the subsequent losses of duplicated genes, and show that the pattern of loss differs among the three species at 20% of all loci. For example, several transcription factor genes, including STE12, TEC1, TUP1 and MCM1, are single-copy in S. cerevisiae but are retained in duplicate in S. castellii and C. glabrata. At many loci, different species have lost different members of a duplicated gene pair, so that 4-7% of single-copy genes compared between any two species are not orthologues. This pattern of gene loss provides strong evidence for speciation through a version of the Bateson-Dobzhansky-Muller mechanism, in which the loss of alternative copies of duplicated genes leads to reproductive isolation. We show that the lineages leading to the three species diverged shortly after the whole-genome duplication, during a period of precipitous gene loss. The set of loci at which single-copy paralogues are retained is biased towards genes involved in ribosome biogenesis and genes that evolve slowly, consistent with the hypothesis that reciprocal gene loss is more likely to occur between duplicated genes that are functionally indistinguishable. We propose a simple, unified model in which a single mechanism--passive gene loss-enabled whole--genome duplication and led to the rapid emergence of new yeast species.
机译:全基因组重复发生在酿酒酵母,酿酒酵母和光滑念珠菌的共同祖先中。在这里,我们追踪重复基因的后续损失,并显示在所有基因座的20%处,三种物种之间的损失模式不同。例如,几个转录因子基因,包括STE12,TEC1,TUP1和MCM1,在酿酒酵母中是单拷贝的,但在酿酒酵母和光滑假丝酵母中一式两份。在许多基因座上,不同物种失去了重复基因对的不同成员,因此在任何两个物种之间比较的4-7%单拷贝基因不是直系同源物。这种基因丧失的模式通过Bateson-Dobzhansky-Muller机制的一种形式为物种形成提供了强有力的证据,其中重复基因的替代拷贝的丧失导致生殖分离。我们表明,导致这三个物种的谱系在整个基因组重复后不久,即基因突变的严重时期内发生了分歧。保留单拷贝旁系同源物的那组基因座偏向于核糖体生物发生中涉及的基因和进化缓慢的基因,这与在功能上无法区分的重复基因之间更可能发生相互基因丢失的假设相一致。我们提出了一个简单,统一的模型,在该模型中,单一机制-被动基因损失使整个基因组得以复制,并导致了新酵母物种的迅速出现。

著录项

  • 来源
    《Nature》 |2006年第7082期|P.341-345|共5页
  • 作者单位

    Smurfit Institute of Genetics, University of Dublin, Trinity College, Dublin 2, Ireland.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

    Genes; Unmarried; Genome; Pattern; 基因; 基因组;

    机译:Genes;Unmarried;Genome;Pattern;基因;基因组;
  • 入库时间 2022-08-18 02:56:27

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