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Evolution of Mating in the Saccharomycotina
Annual Review of Microbiology ( IF 8.5 ) Pub Date : 2017-09-08 00:00:00 , DOI: 10.1146/annurev-micro-090816-093403
Kenneth H. Wolfe 1 , Geraldine Butler 2
Affiliation  

The fungal phylum Ascomycota comprises three subphyla: Saccharomycotina, Pezizomycotina, and Taphrinomycotina. In many Saccharomycotina species, cell identity is determined by genes at the MAT (mating-type) locus; mating occurs between MATa and MATα cells. Some species can switch between MATa and MATα mating types. Switching in the Saccharomycotina originated in the common ancestor of the Saccharomycetaceae, Pichiaceae, and Metschnikowiaceae families, as a flip/flop mechanism that inverted a section of chromosome. Switching was subsequently lost in the Metschnikowiaceae, including Candida albicans, but became more complex in the Saccharomycetaceae when the mechanism changed from inversion to copy-and-paste between HML/HMR and MAT. Based on their phylogenetic closeness and the similarity of their MTL (mating-type like) loci, some Metschnikowia species may provide useful models for the sexual cycles of Candida species. Conservation of synteny demonstrates that, despite changes in its gene content, a single orthologous locus (MAT/MTL) has controlled cell type throughout ascomycete evolution.

中文翻译:


酵母菌交配的进化

真菌门孢子囊菌包含三个亚门:酵母菌纲,Pezizomycotina和Taphrinomycotina。在许多酵母菌物种中,细胞身份是由MAT(交配型)基因座上的基因决定的。MAT aMATα细胞之间发生交配。有些物种可以在MAT aMATα交配类型之间切换。酿酒酵母的转换起源于酿酒酵母科,毕赤酵母科和Metschnikowiaceae科的共同祖先,作为翻转染色体一部分的翻转机制。随后在白色念珠菌等大都会科中失去了转换,但当酿酒酵母科的机制从HML / HMRMAT之间的反转转变为复制粘贴时,它变得更加复杂。基于它们的系统发育亲缘性和它们的MTL(交配型)基因座的相似性,一些Metschnikowia物种可能为念珠菌物种的性周期提供有用的模型。保守性表明,尽管其基因含量发生了变化,但单个直系同源基因座(MAT / MTL)在整个子囊进化过程中都控制着细胞类型。

更新日期:2017-09-08
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