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A phylogenetic overview of the Agaricomycotina

机译:姬松茸的系统发育概述

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The Agaricomycotina contains about one-third of the described species of Fungi, including mushrooms, Jelly fungi and basidiomycetous yeasts. Recent phylogenetic analyses by P. Matheny and colleagues combining nuclear rRNA genes with the protein-coding genes rpb1, rpb2 and lef1 support the division of Agaricomycotina into Tremellomycetes, Dacrymycetes and Agaricomycetes. There is strong support for the monophyly of the Tremellomycetes, and its position as the sister group of the rest of the Agaricontycotina. Dacrymycetes and Agaricomycetes also are supported strongly, and together they form a clade that is equivalent to the Hymenomycetidae of Swann and Taylor. The deepest nodes in the Agaricomycetes, which are supported only by Bayesian measures of confidence, suggest that the Sebacinales, Cantharellales and Auriculariales are among the most ancient lineages. For the first time, the Polyporales are strongly supported as monophyletic and are placed as the sister group of the Thelephorales. The Agaricales, Boletales and Atheliales are United as the Agaricomycetidae, and the Russulales might be its sister group. There are still some problematical nodes that will require more loci to be resolved. Phylogenomics has promise for reconstructing these difficult backbone nodes, but current genome projects are limited mostly to the Agaricales, Boletales and Polyporales. Genome sequences from other major lineages, especially the early diverging clades, are needed to resolve the most ancient nodes and to assess deep homology in ecological characters in the Agaricomycotina.
机译:姬松茸包含约三分之一的所述真菌种类,包括蘑菇,果冻真菌和担子菌酵母。 P. Matheny及其同事最近进行的系统发育分析将核rRNA基因与蛋白质编码基因rpb1,rpb2和lef1结合在一起,有助于将Agaricomycotina分为Tremellomycetes,Dacrymycetes和Agaricomycetes。强烈支持银耳菌的一面性,以及其作为其余琼脂菌姐妹组的地位。芽孢杆菌科和伞菌科也得到了大力支持,它们一起形成了一个分支,相当于斯旺和泰勒的Hymenomycetidae科。仅由贝叶斯置信度支持的龙舌兰中最深的结节表明,Sebacinales,Cantharellales和Auriculariales是最古老的世系。第一次,Polyporales被强烈支持为单系统的,并被放置为Thelephorales的姐妹组。伞菌属,牛肝菌属和雅典娜属被合并为姬鼠科,而Russulales可能是其姊妹群。仍然有一些问题节点需要解决更多的基因座。人体基因组学有望重建这些困难的骨架节点,但目前的基因组计划主要限于蛤gar,牛肝菌和猪Poly。需要来自其他主要谱系的基因组序列,尤其是早期分化的进化枝,来解析最古老的节点并评估龙舌兰的生态特征中的深同源性。

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