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虫草及棒束孢真菌的系统发育分类。

Phylogenetic classification of Cordyceps and the clavicipitaceous fungi.

机构信息

Department of Botany and Plant Pathology, Oregon State University, Corvallis, OR 97331-2902, U.S.A.

出版信息

Stud Mycol. 2007;57:5-59. doi: 10.3114/sim.2007.57.01.

Abstract

Cordyceps, comprising over 400 species, was historically classified in the Clavicipitaceae, based on cylindrical asci, thickened ascus apices and filiform ascospores, which often disarticulate into part-spores. Cordyceps was characterized by the production of well-developed often stipitate stromata and an ecology as a pathogen of arthropods and Elaphomyces with infrageneric classifications emphasizing arrangement of perithecia, ascospore morphology and host affiliation. To refine the classification of Cordyceps and the Clavicipitaceae, the phylogenetic relationships of 162 taxa were estimated based on analyses consisting of five to seven loci, including the nuclear ribosomal small and large subunits (nrSSU and nrLSU), the elongation factor 1alpha (tef1), the largest and the second largest subunits of RNA polymerase II (rpb1 and rpb2), beta-tubulin (tub), and mitochondrial ATP6 (atp6). Our results strongly support the existence of three clavicipitaceous clades and reject the monophyly of both Cordyceps and Clavicipitaceae. Most diagnostic characters used in current classifications of Cordyceps (e.g., arrangement of perithecia, ascospore fragmentation, etc.) were not supported as being phylogenetically informative; the characters that were most consistent with the phylogeny were texture, pigmentation and morphology of stromata. Therefore, we revise the taxonomy of Cordyceps and the Clavicipitaceae to be consistent with the multi-gene phylogeny. The family Cordycipitaceae is validated based on the type of Cordyceps, C. militaris, and includes most Cordyceps species that possess brightly coloured, fleshy stromata. The new family Ophiocordycipitaceae is proposed based on Ophiocordyceps Petch, which we emend. The majority of species in this family produce darkly pigmented, tough to pliant stromata that often possess aperithecial apices. The new genus Elaphocordyceps is proposed for a subclade of the Ophiocordycipitaceae, which includes all species of Cordyceps that parasitize the fungal genus Elaphomyces and some closely related species that parasitize arthropods. The family Clavicipitaceaes. s. is emended and includes the core clade of grass symbionts (e.g., Balansia, Claviceps, Epichloë, etc.), and the entomopathogenic genus Hypocrella and relatives. In addition, the new genus Metacordyceps is proposed for Cordyceps species that are closely related to the grass symbionts in the Clavicipitaceaes. s.Metacordyceps includes teleomorphs linked to Metarhizium and other closely related anamorphs. Two new species are described, and lists of accepted names for species in Cordyceps, Elaphocordyceps, Metacordyceps and Ophiocordyceps are provided.

摘要

虫草,包括 400 多种物种,历史上被分类在棒束孢科(Clavicipitaceae),基于圆柱形子囊、加厚的子囊顶端和丝状子囊孢子,这些孢子通常会分裂成部分孢子。虫草的特点是产生发育良好的通常有梗的子座和作为节肢动物和 Elaphomyces 的病原体的生态,其种下分类强调子囊壳的排列、子囊孢子形态和宿主归属。为了完善虫草和棒束孢科的分类,基于包括核核糖体小亚基和大亚基(nrSSU 和 nrLSU)、延伸因子 1α(tef1)、RNA 聚合酶 II 的最大和第二大亚基(rpb1 和 rpb2)、β-微管蛋白(tub)和线粒体 ATP6(atp6)在内的五个到七个基因座的分析,估计了 162 个分类群的系统发育关系。我们的结果强烈支持存在三个棒束孢科的分支,并且否定了虫草和棒束孢科的单系性。当前虫草分类中使用的大多数诊断特征(例如,子囊壳的排列、子囊孢子的碎片化等)都没有被支持为具有系统发育信息;与系统发育最一致的特征是子座的质地、色素沉着和形态。因此,我们根据多基因系统发育来修订虫草和棒束孢科的分类。将 Cordycipitaceae 科基于虫草的模式种 C. militaris 进行验证,包括大多数具有鲜艳肉质子座的虫草物种。基于 Ophiocordyceps Petch,提出了新的 Ophiocordycipitaceae 科,对其进行了修正。该科的大多数物种产生深色素沉着、坚韧到柔韧的子座,通常具有子囊壳顶端。将 Elaphocordyceps 属提议用于 Ophiocordycipitaceae 的一个亚分支,其中包括所有寄生真菌属 Elaphomyces 的虫草物种和一些寄生节肢动物的密切相关物种。将 Clavicipitaceaes.s.进行修正,包括草共生体(例如 Balansia、Claviceps、Epichloë 等)的核心分支,以及昆虫病原性属 Hypocrella 和相关属。此外,提议了新的 Metacordyceps 属,用于与草共生体在 Clavicipitaceaes.s.密切相关的虫草物种。Metacordyceps 包括与 Metarhizium 和其他密切相关的无性型相关的有性型。描述了两个新物种,并提供了虫草、Elaphocordyceps、Metacordyceps 和 Ophiocordyceps 中接受的种名列表。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d10/2104736/58191c2b3765/1fig1a.jpg

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