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Evolutionary Dynamics of Mating-Type Loci of Mycosphaerella spp. Occurring on Banana

机译:食球菌属物种交配型基因座的进化动力学。发生在香蕉上

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摘要

The devastating Sigatoka disease complex of banana is primarily caused by three closely related heterothallic fungi belonging to the genus Mycosphaerella: M. fijiensis, M. musicola, and M. eumusae. Previous phylogenetic work showing common ancestry led us to analyze the mating-type loci of these Mycosphaerella species occurring on banana. We reasoned that this might provide better insight into the evolutionary history of these species. PCR and chromosome-walking approaches were used to clone the mating-type loci of M. musicola and M. eumusae. Sequences were compared to the published mating-type loci of M. fijiensis and other Mycosphaerella spp., and a novel organization of the MAT loci was found. The mating-type loci of the examined Mycosphaerella species are expanded, containing two additional Mycosphaerella-specific genes in a unique genomic organization. The proteins encoded by these novel genes show a higher interspecies than intraspecies homology. Moreover, M. fijiensis, M. musicola, and M. eumusae contain two additional mating-type-like loci, containing parts of both MAT1-1-1 and MAT1-2-1. The data indicate that M. fijiensis, M. musicola, and M. eumusae share an ancestor in which a fusion event occurred between MAT1-1-1 and MAT1-2-1 sequences and in which additional genes became incorporated into the idiomorph. The new genes incorporated have since then evolved independently in the MAT1-1 and MAT1-2 loci. Thus, these data are an example of the evolutionary dynamics of fungal MAT loci in general and show the great flexibility of the MAT loci of Mycosphaerella species in particular.
机译:香蕉的毁灭性Sigatoka病复合物主要由属于Mycosphaerella属的三种密切相关的杂藻真菌引起:斐济分支杆菌(M. fijiensis),M。musicola和M. eumusae。先前显示出共同祖先的系统进化研究工作使我们分析了香蕉上这些霉菌物种的交配型基因座。我们认为这可能为这些物种的进化历史提供更好的见解。 PCR和染色体行走方法被用于克隆M. musicola和M. eumusae的交配型基因座。将序列与已公开的斐济分枝杆菌和其他鼠疫菌的交配型基因座进行比较,发现了一种新型的MAT基因座组织。所检查的真菌球菌物种的交配型基因座被扩展,在一个独特的基因组组织中包含两个额外的真菌球菌特异性基因。这些新基因编码的蛋白质显示出比种内同源性更高的种间。此外,斐济分枝杆菌,音乐分枝杆菌和乐草分枝杆菌还包含两个额外的交配型基因座,包含MAT1- 1 - 1 MAT 1 - 2 - 1 。数据表明 M。 fijiensis M。 musicola M。 eumusae 的祖先在 MAT 1 - 1 - 1 MAT 1 - 2 - 1 序列,其中其他基因被整合到独特型中。从那时起,并入的新基因就在MAT1-1和MAT1-2基因座中独立进化。因此,这些数据通常是真菌MAT基因座进化动力学的一个例子,并且特别显示了 Mycosphaerella 物种的MAT基因座的巨大灵活性。

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