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Multiple Reinventions of Mating-type Switching during Budding Yeast Evolution

机译:发芽酵母进化期间交配型切换的多重重振

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摘要

Cell type in budding yeasts is determined by the genotype at the mating-type (MAT) locus, but yeast species differ widely in their mating compatibility systems and life cycles. Among sexual yeasts, heterothallic species are those in which haploid strains fall into two distinct and stable mating types (MATa and MAT alpha), whereas homothallic species are those that can switch mating types or that appear not to have distinct mating types [1, 2]. The evolutionary history of these mating compatibility systems is uncertain, particularly regarding the number and direction of transitions between homothallism and heterothallism, and regarding whether the process of mating-type switching had a single origin [3-5]. Here, we inferred the mating compatibility systems of 332 budding yeast species from their genome sequences. By reference to a robust phylogenomic tree [6], we detected evolutionary transitions between heterothallism and homothallism, and among different forms of homothallism. We find that mating-type switching has arisen independently at least 11 times during yeast evolution and that transitions from heterothallism to homothallism greatly outnumber transitions in the opposite direction (31 versus 3). Although the 3-locus MAT-HML-HMR mechanism of mating-type switching as seen in Saccharomyces cerevisiae had a single evolutionary origin in budding yeasts, simpler "flip/flop'' mechanisms of switching evolved separately in at least 10 other groups of yeasts. These results point to the adaptive value of homothallism and mating-type switching to unicellular fungi.
机译:萌芽酵母中的细胞类型由交配型(垫子)基因座的基因型确定,但酵母物种在交配兼容性系统和生命周期中差异广泛。性酵母中,异丙醇物种是单倍体菌株落入两个不同且稳定的交配类型(MATA和MATHAL)的那些,而HOMOTHALLIC物种是能够切换配合类型或出现不具有不同交配类型的那些物种[1,2 ]。这些交配兼容性系统的进化历史是不确定的,特别是关于同性恋和异常的转变的数量和方向,以及交配型切换过程是否具有单个原点[3-5]。在这里,我们将332个萌芽酵母物种的交配兼容性系统从其基因组序列推断出来。通过引用鲁棒的系统核糖树[6],我们在异常的情况下检测到杂果和同性恋之间的进化过渡,以及不同形式的同性恋。我们发现,在酵母进化期间,交配型切换至少出现了至少11次,并且从异常的异常转变为HOMOTHOLLISH的转变大大超过了相反方向的过渡(31与3)。虽然Saccharomyces Cerevisiae中所见的配合式切换的3-incus mat-HMR机制在萌芽酵母中具有单一进化源,但在至少10种酵母中,切换更简单的“翻转/翻转”的切换机制。这些结果指出了与单细胞真菌的本质和交配型切换的自适应价值。

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  • 来源
    《Current Biology: CB》 |2019年第15期|共16页
  • 作者单位

    Univ Coll Dublin Conway Inst &

    Sch Med Dublin 4 Ireland;

    Univ Wisconsin JF Crow Inst Study Evolut Wisconsin Energy Inst Lab Genet Genome Ctr Wisconsin Madison WI 53706 USA;

    Vanderbilt Univ Dept Biol Sci Nashville TN 37235 USA;

    Univ Wisconsin JF Crow Inst Study Evolut Wisconsin Energy Inst Lab Genet Genome Ctr Wisconsin Madison WI 53706 USA;

    Vanderbilt Univ Dept Biol Sci Nashville TN 37235 USA;

    Vanderbilt Univ Dept Biol Sci Nashville TN 37235 USA;

    Univ Wisconsin JF Crow Inst Study Evolut Wisconsin Energy Inst Lab Genet Genome Ctr Wisconsin Madison WI 53706 USA;

    Univ Coll Dublin Conway Inst &

    Sch Med Dublin 4 Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
  • 关键词

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