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Multigene phylogeny of filamentous ambrosia fungi associated with ambrosia and bark beetles

机译:丝状闭锁真菌与闭锁和树皮甲虫的多基因系统发育

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摘要

Most 'ambrosia' fungi are members of a heterogeneous group of ophiostomatoids that includes the anamorph genera Ambrosiella, Raffaelea and Dryadomyces. The taxonomy of these fungi based on morphological features has been complicated by these features being poorly descriptive and having evolved convergently. In this work we report maximum parsimony and Bayesian phylogenetic analysis of a multigene dataset (nSSU rDNA, nLSU rDNA and beta -tubulin gene) from sixty-seven taxa that include members of genera Ambrosiella, Raffaelea and Dryadomyces and a diverse set of ophiostomatoid relatives. We discuss the phylogenetic status of genus Ambrosiella and its relationships with representatives of Ophiostomatales teleomorph and anamorph genera. Our analysis shows that ten of the thirteen species that had been assigned to the genus Ambrosiella are related to the teleomorph genera Grosmannia or Ophiostoma, within the Ophiostomatales. The multigene analysis and expanded taxon samplings provide a higher resolution for the species phylogeny and clarify detailed relationships between Ambrosiella associates of ambrosia and bark beetles and the closely related species of genera Raffaelea and Dryadomyces. We discuss difficulties in using the morphology of conidiophores and the mode of conidiogenesis to re-define the phylogenetic classification of Ambrosiella species. Finally, we report a correlation between the molecular classification of Ophiostomatales-related species of Ambrosiella and Raffaelea and their ecological niches.
机译:大多数“ ambrosia”真菌是不同种类的ophostomatoids成员,其中包括变形菌属Ambrosiella,Raffaelea和Dryadomyces。这些真菌基于形态学特征的分类学由于描述性较差并且会逐渐演变而变得复杂。在这项工作中,我们报告了来自67个分类群的多基因数据集(nSSU rDNA,nLSU rDNA和β-微管蛋白基因)的最大简约性和贝叶斯系统发育分析,其中包括Ambrosiella,Raffaelea和Dryadomyces属的成员以及各种蛇皮类亲戚。我们讨论了Ambrosiella属的系统发育状况及其与拟畸形和无形属的代表的关系。我们的分析表明,已被分配到Ambrosiella属的13个物种中,有10个与Ophiostomatale内的Grosmannia或Ophiostoma属的变长形属有关。多基因分析和扩展的分类单元取样为该物种的系统发育提供了更高的分辨率,并阐明了安布罗西亚和树皮甲虫的安布罗氏菌属同伴与拉菲亚属和Dryadomyces属的密切相关物种之间的详细关系。我们讨论使用分生孢子的形态和分生孢子的模式来重新定义安布罗氏菌属的系统发育分类的困难。最后,我们报告了与沙棘相关的物种Ambrosiella和Raffaelea的分子分类与其生态位之间的相关性。

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