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The Evolution of Sexual Reproduction and the Mating-Type Locus: Links to Pathogenesis of Cryptococcus Human Pathogenic Fungi

机译:性繁殖的演变与交配型基因座:链接性致病菌性致病真菌的发病机制

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摘要

Cryptococcus species utilize a variety of sexual reproduction mechanisms, which generate genetic diversity, purge deleterious mutations, and contribute to their ability to occupy myriad environmental niches and exhibit a range of pathogenic potential. The bisexual and unisexual cycles of pathogenic Cryptococcus species are stimulated by properties associated with their environmental niches and proceed through well-characterized signaling pathways and corresponding morphological changes. Genes governing mating are encoded by the mating-type (MAT) loci and influence pathogenesis, population dynamics, and lineage divergence in Cryptococcus. MAT has undergone significant evolutionary changes within the Cryptococcus genus, including transition from the ancestral tetrapolar state in nonpathogenic species to a bipolar mating system in pathogenic species, as well as several internal reconfigurations. Owing to the variety of established sexual reproduction mechanisms and the robust characterization of the evolution of mating and MAT in this genus, Cryptococcus species provide key insights into the evolution of sexual reproduction.
机译:水蛭球菌种类利用各种性繁殖机制,产生遗传多样性,净化有害突变,并有助于他们占据无数环保利用的能力并表现出一系列致病潜力。致病性密冻杆菌物种的双性恋和单位循环受与环境核性的性质刺激,并通过特征的信号通路和相应的形态变化进行。治疗配合的基因由交配型(MAT)基因座并影响致癌物质的发病机制,人口动态和血管分歧。垫在碱基发生在致癌物种中,包括从祖先物种的祖先物种中的祖先左旋辐射状态的转变,以及几种内部重新配置。由于各种既定的性生殖机制和这种属的交配和垫子演变的强大表征,隐球菌物种为性繁殖的演变提供了关键的见解。

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