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首页> 外文期刊>Eukaryotic cell >Molecular and Genetic Evidence for a Tetrapolar Mating System in the Basidiomycetous Yeast Kwoniella mangrovensis and Two Novel Sibling Species
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Molecular and Genetic Evidence for a Tetrapolar Mating System in the Basidiomycetous Yeast Kwoniella mangrovensis and Two Novel Sibling Species

机译:担子菌酵母红树林和两个新的同胞物种的四极交配系统的分子和遗传证据。

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Kwoniella mangrovensis has been described as a sexual species with a bipolar mating system. Phylogenetic analysis of multiple genes places this species together with Kwoniella heveanensis in the Kwoniella clade, a sister clade to that containing two pathogenic species of global importance, Cryptococcus neoformans and Cryptococcus gattii, within the Tremellales. Recent studies defining the mating type loci (MAT) of species in these clades showed that, with the exception of C. neoformans and C. gattii, which are bipolar with a single biallelic multigene MAT locus, several other species feature a tetrapolar mating system with two unlinked loci (homeodomain [HD] and pheromone/receptor [P/R] loci). We characterized several strains from the original study describing K. mangrovensis; two MAT regions were amplified and sequenced: the STE20 gene (P/R locus) and the divergently transcribed SXI1 and SXI2 genes (HD locus). We identified five different mating types with different STE20/SXI allele combinations that together with results of mating experiments demonstrate that K. mangrovensis is not bipolar but instead has a tetrapolar mating system. Sequence and gene analysis for a 43-kb segment of the K. mangrovensis type strain MAT locus revealed remarkable synteny with the homologous K. heveanensis MAT P/R region, providing new insights into slower evolution of MAT loci in the Kwoniella compared to the Cryptococcus clade of the Tremellales. The study of additional isolates from plant substrates in Europe and Botswana using a combination of multilocus sequencing with MAT gene analysis revealed two novel sibling species that we name Kwoniella europaea and Kwoniella botswanensis and which appear to also have tetrapolar mating systems.
机译:红树林小球藻已被描述为具有双极交配系统的有性物种。对多个基因进行系统进化分析,将这种物种与三叶橡胶Kwoniella heveanensis一起放置在银耳科的Kwoniella进化枝中,该姐妹进化枝包含两个具有全球重要性的致病物种,即新隐球菌和加氏隐球菌。最近的研究在这些进化枝中定义了物种的交配类型基因座( MAT ),结果表明,除了新孢梭菌和加迪梭菌外,它们都是双极的,具有单个双等位基因多基因 MAT < / em>位点,其他几个物种具有四极交配系统,带有两个未链接的基因座(同源域[HD]和信息素/受体[P / R]基因座)。我们从描述K. mangrovensis的原始研究中鉴定了几种菌株。扩增并测序了两个 MAT 区域: STE20 基因(P / R基因座)和转录不同的 SXI1 SXI2 基因(HD基因座)。我们确定了五种不同的交配类型,它们具有不同的 STE20 / SXI 等位基因组合,再加上交配实验的结果表明,红树K. mangrovensis不是双极性的,而是四极性的交配系统。美洲红树型菌株 MAT 基因座一个43-kb片段的序列和基因分析表明,它与同源K.heveanensis MAT P / R区具有显着的同源性,提供了新的与银耳隐球菌进化支相比,Kwoniella中 MAT 基因座进化缓慢的见解。在欧洲和博茨瓦纳从植物底物中分离出的其他分离物的研究,结合多基因座测序和 MAT 基因分析,发现了两个新的同胞物种,我们将其命名为Kwoniella europaea和Bwwwanella botswanensis,并且看起来也具有四极交配系统。

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