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新属托罗木霉属、新属丝状虫霉属及革菌属中的其他种。

Thoreauomyces gen. nov., Fimicolochytrium gen. nov. and additional species in Geranomyces.

机构信息

School of Biology & Ecology, University of Maine, Orono, ME 04469, USA.

出版信息

Mycologia. 2012 Sep-Oct;104(5):1229-43. doi: 10.3852/12-015. Epub 2012 Jun 6.

Abstract

Powellomycetaceae (Spizellomycetales) contain a diverse group of exogenously developing chytrids found by baiting water preparations of soils and manure with pollen. A previous molecular phylogenetic study indicated that some lineages within this family represent undescribed genera and species. Description of genera within the Spizellomycetales traditionally has relied on ultrastructural characters of zoospores, whereas species have been based on thallus development and morphology. We analyzed Powellomycetaceae chytrids that had not yet had ultrastructural and thallus morphologies determined. Because these chytrids vary little morphologically, we used a linear discriminant function analysis of thallus characters to determine features most useful for separating species when grown in pure culture on identical media. Zoosporic ultrastructures of two groups of isolates differed from those of the two described genera in the family, and we describe the new genera Thoreauomyces with one new species and Fimicolochytrium with two new species. Also, we describe three new species within Geranomyces. Linear discriminant function analysis, although helpful for determining more stable morphological characters, was not completely accurate in assigning chytrids to the correct genus or species, thus emphasizing the importance of molecular characters for identifying these taxa.

摘要

粉孢霉科(Spizellomycetales)包含一组通过用花粉诱饵土壤和粪便的水制剂来发现的外生性发展的壶菌,这些壶菌具有多样性。先前的分子系统发育研究表明,该科内的一些谱系代表未被描述的属和种。Spizellomycetales 内的属的描述传统上依赖于游动孢子的超微结构特征,而种则基于营养体发育和形态。我们分析了尚未确定超微结构和营养体形态的粉孢霉科壶菌。由于这些壶菌在形态上差异很小,我们使用营养体特征的线性判别函数分析来确定在相同培养基上纯培养时最有助于分离种的特征。两组分离物的游动孢子超微结构与该科中两个描述的属的超微结构不同,我们描述了具有一个新种的 Thoreauomyces 新属和具有两个新种的 Fimicolochytrium 新属。此外,我们还描述了 Geranomyces 内的三个新种。线性判别函数分析虽然有助于确定更稳定的形态特征,但在将壶菌正确分配到属或种时并不完全准确,因此强调了分子特征对于识别这些分类群的重要性。

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