Suppr超能文献

银耳纲:一类迄今为止被忽视的具有广泛菌根潜力的异担子菌纲真菌。

Sebacinales: a hitherto overlooked cosm of heterobasidiomycetes with a broad mycorrhizal potential.

作者信息

Weiss Michael, Selosse Marc-André, Rexer Karl-Heinz, Urban Alexander, Oberwinkler Franz

机构信息

Botanisches Institut, Universität Tübingen, Auf der Morgenstelle 1, D-72076 Tübingen, Germany.

出版信息

Mycol Res. 2004 Sep;108(Pt 9):1003-10. doi: 10.1017/s0953756204000772.

Abstract

Within the basidiomycetes, the vast majority of known mycorrhizal species are homobasidiomycetes. It was therefore surprising when molecular and ultrastructural studies revealed a broad diversity of mycorrhizal associations involving members of the heterobasidiomycetous Sebacinaceae, fungi which, due to their inconspicuous basidiomes, have been often overlooked. To investigate the phylogenetic position of the Sebacinaceae within the basidiomycetes and to infer phylogenetic relationships within the Sebacinaceae, we made molecular phylogenetic analyses based on nuclear rDNA. We present a well-resolved phylogeny of the main lineages of basidiomycetes which suggests that the Sebacinaceae is the most basal group with known mycorrhizal members. Since more basal taxa of basidiomycetes consist of predominantly mycoparasitic and phytoparasitic fungi, it seems possible that a mycorrhizal life strategy, which was transformed into a saprotrophic strategy several times convergently, is an apomorphic character for the Hymenomycetidae. Mycorrhizal taxa of Sebacinaceae, including mycobionts of ectomycorrhizas, orchid mycorrhizas, ericoid mycorrhizas, and jungermannioid mycorrhizas, are distributed over two subgroups. One group contains species with macroscopically visible basidiomes, whereas members of the other group probably lack basidiomes. Sebacina appears to be polyphyletic; current species concepts in Sebacinaceae are questionable. Sebacina vermifera sensu Warcup & Talbot consists of a broad complex of species possibly including mycobionts of jungermannioid and ericoid mycorrhizas. This wide spectrum of mycorrhizal types in one fungal family is unique. Extrapolating from the known rDNA sequences in Sebacinaceae, it is evident that there is a cosm of mycorrhizal biodiversity yet to be discovered in this group. Taxonomically, we recognise the Sebacinaceae as constituting a new order, the Sebacinales.

摘要

在担子菌纲中,绝大多数已知的菌根物种是同担子菌。因此,当分子和超微结构研究揭示出涉及异担子菌纲的蜡壳耳目成员的广泛多样的菌根共生关系时,令人惊讶,蜡壳耳目真菌由于其不显眼的担子果,常常被忽视。为了研究蜡壳耳目在担子菌纲中的系统发育位置,并推断蜡壳耳目内部的系统发育关系,我们基于核核糖体DNA进行了分子系统发育分析。我们展示了担子菌纲主要谱系的一个解析良好的系统发育树,这表明蜡壳耳目是具有已知菌根成员的最基部类群。由于担子菌纲中更基部的分类单元主要由真菌寄生菌和植物寄生菌组成,似乎菌根生活策略(多次趋同地转变为腐生策略)可能是层菌纲的一个衍征。蜡壳耳目的菌根分类单元,包括外生菌根、兰花菌根、石楠类菌根和叶苔类菌根的菌根菌,分布在两个亚组中。一组包含担子果在宏观上可见的物种,而另一组的成员可能没有担子果。蜡壳耳属似乎是多系的;蜡壳耳目目前的物种概念值得怀疑。Warcup和Talbot所定义的紫蜡壳菌包含一个广泛的物种复合体,可能包括叶苔类和石楠类菌根的菌根菌。一个真菌家族中如此广泛的菌根类型谱是独一无二的。从蜡壳耳目已知的核糖体DNA序列推断,很明显在这个类群中还有大量的菌根生物多样性有待发现。在分类学上,我们将蜡壳耳目视为一个新的目,即蜡壳耳目。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验