Bruns T D, Vilgalys R, Barns S M, Gonzalez D, Hibbett D S, Lane D J, Simon L, Stickel S, Szaro T M, Weisburg W G
Department of Plant Pathology, University of California Berkeley 94720.
Mol Phylogenet Evol. 1992 Sep;1(3):231-41. doi: 10.1016/1055-7903(92)90020-h.
Nucleotide sequences of the small subunit ribosomal RNA (18S) gene were used to investigate evolutionary relationships within the Fungi. The inferred tree topologies are in general agreement with traditional classifications in the following ways: (1) the Chytridiomycota and Zygomycota appear to be basal groups within the Fungi. (2) The Ascomycota and Basidiomycota are a derived monophyletic group. (3) Relationships within the Ascomycota are concordant with traditional orders and divide the hemi- and euascomycetes into distinct lineages. (4) The Basidiomycota is divided between the holobasidiomycetes and phragmobasidiomycetes. Conflicts with traditional classification were limited to weakly supported branches of the tree. Strongly supported relationships were robust to minor changes in alignment, method of analysis, and various weighting schemes. Weighting, either of transversions or by site, did not convincingly improve the status of poorly supported portions of the tree. The rate of variation at particular sites does not appear to be independent of lineage, suggesting that covariation of sites may be an important phenomenon in these genes.
核糖体RNA小亚基(18S)基因的核苷酸序列被用于研究真菌内部的进化关系。推断出的树形拓扑结构在以下方面总体上与传统分类一致:(1)壶菌门和接合菌门似乎是真菌中的基部类群。(2)子囊菌门和担子菌门是一个衍生的单系类群。(3)子囊菌门内部的关系与传统目一致,并将半子囊菌和真子囊菌分为不同的谱系。(4)担子菌门分为全担子菌和隔担子菌。与传统分类的冲突仅限于树形图中支持较弱的分支。得到有力支持的关系对于比对、分析方法和各种加权方案的微小变化具有稳健性。无论是转换加权还是位点加权,都没有令人信服地改善树形图中支持不足部分的状况。特定位点的变异率似乎并非独立于谱系,这表明位点的共变异可能是这些基因中的一个重要现象。