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A Deviation from the Bipolar-Tetrapolar Mating Paradigm in an Early Diverged Basidiomycete

机译:在早期分散的担子菌中与双极-四极交配模式的偏差。

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摘要

In fungi, sexual identity is determined by specialized genomic regions called MAT loci which are the equivalent to sex chromosomes in some animals and plants. Usually, only two sexes or mating types exist, which are determined by two alternate sets of genes (or alleles) at the MAT locus (bipolar system). However, in the phylum Basidiomycota, a unique tetrapolar system emerged in which four different mating types are generated per meiosis. This occurs because two functionally distinct molecular recognition systems, each encoded by one MAT region, constrain the selection of sexual partners. Heterozygosity at both MAT regions is a pre-requisite for mating in both bipolar and tetrapolar basidiomycetes. Tetrapolar mating behaviour results from the absence of genetic linkage between the two regions bringing forth up to thousands of mating types. The subphylum Pucciniomycotina, an early diverged lineage of basidiomycetes encompassing important plant pathogens such as the rusts and saprobes like Rhodosporidium and Sporidiobolus, has been so far poorly explored concerning the content and organization of MAT loci. Here we show that the red yeast Sporidiobolus salmonicolor has a mating system unlike any previously described because occasional disruptions of the genetic cohesion of the bipolar MAT locus originate new mating types. We confirmed that mating is normally bipolar and that heterozygosity at both MAT regions is required for mating. However, a laboratory cross showed that meiotic recombination may occur within the bipolar MAT locus, explaining tetrapolar features like increased allele number and evolution rates of some MAT genes. This pseudo-bipolar system deviates from the classical bipolar–tetrapolar paradigm and, to our knowledge, has never been observed before. We propose a model for MAT evolution in the Basidiomycota in which the pseudo-bipolar system may represent a hitherto unforeseen gradual form of transition from an ancestral tetrapolar system to bipolarity.
机译:在真菌中,性身份是由称为MAT基因座的特殊基因组区域决定的,该区域与某些动植物的性染色体相同。通常,仅存在两种性别或交配类型,这由MAT基因座(双极系统)的两组备用基因(或等位基因)决定。然而,在担子菌门中,出现了独特的四极系统,其中每个减数分裂产生四种不同的交配类型。发生这种情况是因为两个功能不同的分子识别系统(每个系统均由一个MAT区域编码)限制了性伴侣的选择。两个MAT区域的杂合性是在双极性和四极性担子菌中交配的先决条件。四极体的交配行为是由于两个区域之间没有遗传联系而导致多达数千种交配类型。迄今为止,关于MAT基因座的内容和组织,对Pucciniomycotina亚种是一种担子菌的早期分化谱系,其中涵盖了重要的植物病原体,例如锈菌和腐烂菌如Rhodosporidium和Sporidiobolus。在这里,我们显示红色酵母沙门氏菌具有不同于以前描述的任何交配系统,因为偶发性MAT基因座的遗传内聚力偶发性破坏会产生新的交配类型。我们确认交配通常是双极的,并且两个MAT区域都需要杂合。但是,实验室杂交显示,双极MAT基因座内可能发生减数分裂重组,解释了四极特征,如等位基因数量增加和某些MAT基因的进化速率。这种伪双极系统偏离了经典的双极-四极范式,据我们所知,从未见过。我们提出了一种在担子菌中MAT进化的模型,其中伪双极系统可能代表了从祖先四极系统到双极的过渡的迄今无法预料的逐步形式。

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