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Phylogeny and Phenotypic Characterization of Pathogenic Cryptococcus Species and Closely Related Saprobic Taxa in the Tremellales

机译:银耳病原性隐球菌物种及亲缘类群的系统发育和表型特征

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摘要

The basidiomycetous yeasts Cryptococcus neoformans and Cryptococcus gattii are closely related sibling species that cause respiratory and neurological disease in humans and animals. Within these two recognized species, phylogenetic analysis reveals at least six cryptic species defined as molecular types (VNI/II/B, VNIV, VGI, VGII, VGIII, and VGIV) that comprise the pathogenic Cryptococcus species complex. These pathogenic species are clustered in the Filobasidiella clade within the order Tremellales. Previous studies have shown that the Filobasidiella clade also includes several saprobic fungi isolated from insect frass, but information evaluating the relatedness of the saprobes and pathogens within this cluster is limited. Here, the phylogeny encompassing a subset of species in the Tremellales lineage that clusters closely with the pathogenic Cryptococcus species complex was resolved by employing a multilocus sequencing approach for phylogenetic analysis. Six highly conserved genomic loci from 15 related basidiomycete species were sequenced, and the alignments from the concatenated gene sequences were evaluated with different tree-building criteria. Furthermore, these 15 species were subjected to virulence and phenotype assays to evaluate their pathogenic potential. These studies revealed that Cryptococcus amylolentus and Tsuchiyaea wingfieldii, two nonpathogenic sibling species, are the taxa most closely related to the pathogens C. neoformans and C. gattii and together with Filobasidiella depauperata form a Cryptococcus sensu stricto group. Five other saprobic yeast species form the Kwoniella clade, which appears to be a part of a more distantly related sensu lato group. This study establishes a foundation for future comparative genomic approaches that will provide insight into the structure, function, and evolution of the mating type locus, the transitions in modes of sexual reproduction, and the emergence of human pathogenic species from related or ancestral saprobic species.
机译:担子菌酵母新隐球菌和加氏隐球菌是引起人类和动物呼吸系统疾病和神经系统疾病的兄弟姐妹物种。在这两个公认的物种中,系统发育分析揭示了至少六个隐性物种,这些隐性物种定义为构成致病隐球菌物种复合体的分子类型(VNI / II / B,VNIV,VGI,VGII,VGIII和VGIV)。这些致病物种聚集在银耳序内的费氏杆菌属进化枝中。先前的研究表明,费氏杆菌属还包括从昆虫类中分离出的几种腐生真菌,但是评估该簇中腐生菌和病原体的相关性的信息有限。在这里,通过使用多基因座测序方法进行系统发育分析,解决了在银耳谱系中与致病隐球菌物种复合体紧密簇合的亚种物种的系统发育。对来自15个相关担子菌物种的6个高度保守的基因组位点进行了测序,并使用不同的造树标准对来自串联基因序列的比对进行了评估。此外,对这15个物种进行了毒力和表型分析,以评估其致病潜力。这些研究表明,两个非致病性兄弟姐妹淀粉隐球菌和翼形T(Tsuchiyaea wingfieldii)是与病原体新孢子虫(C. neoformans)和加迪菌(C. gattii)关系最密切的类群,并与细丝丝藻(Filobasidiella depauperata)一起组成了严格的隐球菌组。 Kwoniella进化枝形成了其他五个腐殖酵母物种,这似乎是与更紧密相关的sensu lato组的一部分。这项研究为将来的比较基因组方法奠定了基础,该方法将提供对交配型基因座的结构,功能和进化,有性生殖方式的转变以及相关或祖先腐生物种中人类致病物种的出现的深入了解。

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