首页> 外文期刊>American Journal of Botany >Remarkable nutritional diversity of basidiomycetes in the Corticiales, including a new foliicolous species of Marchandiomyces (anamorphic Basidiomycota, Corticiaceae) from Australia1
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Remarkable nutritional diversity of basidiomycetes in the Corticiales, including a new foliicolous species of Marchandiomyces (anamorphic Basidiomycota, Corticiaceae) from Australia1

机译:皮质类动物中担子菌的显着营养多样性,包括来自澳大利亚的一种新的叶类马氏菌属(变形的担子菌,Corticiaceae)1

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摘要

Fungi in the basidiomycete order Corticiales are remarkably diverse nutritionally, including a variety of saprotrophs, plant and fungal pathogens, and lichen-forming fungi. Tracing the origin of this diversity depends on a clearer understanding of the phylogenetic relationships of fungi in the order. One of its core members is the genus Marchandiomyces, originally established for lichen pathogens that form orange or coral bulbils. We describe here a new species in the genus, M. marsonii sp. nov., which is unusual in its appearance, habit, and geographic provenance. It is foliicolous on leaves of Pandanus (screw pines, Pandanaceae) and produces flattened, coral bulbils resembling apothecia of the ascomycete genus Orbilia. It is also the first member of the genus to be collected from Australia. An isolate of the new fungus and several additional cultures of related plant pathogenic fungi were obtained and investigated phylogenetically using parsimony, likelihood, and Bayesian analyses of nuclear small and large subunit ribosomal sequences. Our phylogeny makes clear that Marchandiomyces species and their close relatives contribute significantly to the ecological diversity of the Corticiales and that this diversity is derived mainly from lignicolous ancestors.
机译:担子菌顺序的真菌皮质类在营养上非常多样化,包括各种腐生菌,植物和真菌病原体以及形成地衣的真菌。追踪这种多样性的根源取决于对真菌的系统发育关系的更清晰的了解。它的核心成员之一是Marchandiomyces属,最初是为形成橙色或珊瑚鳞茎的地衣病原体而建立的。我们在这里描述了一个新的物种,M。marsonii sp。十一月,这在外观,习惯和地理来源上都是不寻常的。它在露兜树(螺旋松属,露兜树科)的叶子上呈叶状,并产生扁平状,类似于子囊菌Orbilia属的珊瑚鳞茎的珊瑚鳞茎。它也是从澳大利亚收集的该属的第一个成员。获得了新真菌的分离物和相关植物病原真菌的其他几种培养物,并使用简约,似然和贝叶斯分析对核小和大亚基核糖体序列进行了系统发育研究。我们的系统发育史清楚地表明,马氏菌属及其近缘种对皮质类固醇的生态多样性做出了重要贡献,而这种多样性主要来源于齿科祖先。

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