利用四个核基因对癔病菌科和贻贝盘菌科(座囊菌纲、座囊菌目、子囊菌门)的进化研究

On the evolution of the Hysteriaceae and Mytilinidiaceae (Pleosporomycetidae, Dothideomycetes, Ascomycota) using four nuclear genes.

作者信息

Boehm Eric W A, Schoch Conrad L, Spatafora Joseph W

机构信息

Department of Biological Sciences, Kean University, 1000 Morris Ave., Union, New Jersey 07083, USA.

出版信息

Mycol Res. 2009 Apr;113(Pt 4):461-79. doi: 10.1016/j.mycres.2008.12.001.

Abstract

We present a molecular phylogenetic analysis for two families within the Pleosporomycetidae (Dothideomycetes), the Hysteriaceae, and the Mytilinidiaceae, using four nuclear genes, the ribosomal LSU and SSU, transcription elongation factor 1 alpha and the second largest RNA polymerase II subunit. Multigene phylogenies provide strong support for the monophyly of the Hysteriaceae and of the Mytilinidiaceae, both within the Pleosporomycetidae. However, sequence data also indicate that both families are not closely related within the subclass. Although core groups for many of the genera in the Hysteriaceae have been defined, Hysterium, Gloniopsis, and Hysterographium are polyphyletic, with affinities not premised on spore septation and pigmentation. Glonium is also polyphyletic, but along two highly divergent lines. The genus lies outside of the Hysteriaceae, and finds close affinities instead with the family Mytilinidiaceae, for which we propose Gloniaceae fam. nov. to accommodate the type, G. stellatum and related forms. The genus Psiloglonium is reinstated within the Hysteriaceae, with P. lineare, as type, to accommodate non-subiculate species, with apically obtuse didymospores. Farlowiella is removed from the Hysteriaceae, but remains within the Pleosporomycetidae. In contrast, despite divergent spore morphologies, the genera Mytilinidion and Lophium form a strongly supported clade, thus defining a highly monophyletic Mytilinidiaceae, adjacent to the Gloniaceae, for which we propose the Mytilinidiales ord. nov. The genus Ostreichnion, previously in the Mytilinidiaceae, is here transferred to the Hysteriaceae. It is concluded that the evolution of the hysterothecium occurred multiple times within the Pleosporomycetidae, and alone it is not a synapomorphic character state for the Hysteriaceae.

摘要

我们利用四个核基因,即核糖体大亚基(LSU)和小亚基(SSU)、转录延伸因子1α以及RNA聚合酶II第二大亚基,对煤炱菌科(座囊菌纲)中的两个科,即癿癕科和壳梭孢科进行了分子系统发育分析。多基因系统发育分析有力地支持了癿癕科和壳梭孢科在煤炱菌科内的单系性。然而,序列数据也表明这两个科在该亚纲内并非密切相关。尽管已确定了癿癕科中许多属的核心类群,但癿癕属、拟癿癕属和癿癕叶菌属是多系的,其亲缘关系并非基于孢子隔膜和色素沉着。球癿癕属也是多系的,但沿着两条高度分歧的谱系。该属位于癿癕科之外,反而与壳梭孢科有密切亲缘关系,我们为此提议建立球癿癕科(Gloniaceae fam. nov.)以容纳模式种星状球癿癕及相关形态。线纹裸球癕属被重新归入癿癕科,以线状线纹裸球癕为模式种,以容纳非基部着生的物种,其双胞孢子顶端钝圆。法洛盘孢属被从癿癕科中移除,但仍留在煤炱菌科内。相反,尽管孢子形态不同,壳梭孢属和冠孢壳属形成了一个得到有力支持的分支,从而界定了一个高度单系的壳梭孢科,与球癿癕科相邻,我们为此提议建立壳梭孢目(Mytilinidiales ord. nov.)。先前在壳梭孢科中的奥氏菌属在此被转移到癿癕科。得出的结论是,子囊座在煤炱菌科内多次演化,仅其自身并非癕科的一个共衍征性状状态。

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