Department of Microbiology, Faculty of Science and Informatics, University of Szeged, Szeged, Hungary.
PLoS One. 2011;6(11):e27507. doi: 10.1371/journal.pone.0027507. Epub 2011 Nov 10.
Although the fungal order Mortierellales constitutes one of the largest classical groups of Zygomycota, its phylogeny is poorly understood and no modern taxonomic revision is currently available. In the present study, 90 type and reference strains were used to infer a comprehensive phylogeny of Mortierellales from the sequence data of the complete ITS region and the LSU and SSU genes with a special attention to the monophyly of the genus Mortierella. Out of 15 alternative partitioning strategies compared on the basis of Bayes factors, the one with the highest number of partitions was found optimal (with mixture models yielding the best likelihood and tree length values), implying a higher complexity of evolutionary patterns in the ribosomal genes than generally recognized. Modeling the ITS1, 5.8S, and ITS2, loci separately improved model fit significantly as compared to treating all as one and the same partition. Further, within-partition mixture models suggests that not only the SSU, LSU and ITS regions evolve under qualitatively and/or quantitatively different constraints, but that significant heterogeneity can be found within these loci also. The phylogenetic analysis indicated that the genus Mortierella is paraphyletic with respect to the genera Dissophora, Gamsiella and Lobosporangium and the resulting phylogeny contradict previous, morphology-based sectional classification of Mortierella. Based on tree structure and phenotypic traits, we recognize 12 major clades, for which we attempt to summarize phenotypic similarities. M. longicollis is closely related to the outgroup taxon Rhizopus oryzae, suggesting that it belongs to the Mucorales. Our results demonstrate that traits used in previous classifications of the Mortierellales are highly homoplastic and that the Mortierellales is in a need of a reclassification, where new, phylogenetically informative phenotypic traits should be identified, with molecular phylogenies playing a decisive role.
虽然真菌目 Mortierellales 构成了接合菌门最大的经典类群之一,但它的系统发育尚未得到充分了解,目前也没有现代的分类修订版。在本研究中,使用了 90 个模式和参考菌株,从完整 ITS 区、LSU 和 SSU 基因的序列数据推断了 Mortierellales 的综合系统发育,特别关注了 Mortierella 属的单系性。在基于贝叶斯因子比较的 15 种替代分区策略中,发现具有最高分区数量的策略是最优的(混合模型产生了最佳的似然和树长值),这意味着核糖体基因的进化模式比普遍认为的更为复杂。与将所有基因视为同一分区相比,分别对 ITS1、5.8S 和 ITS2 进行分区可显著提高模型拟合度。此外,分区内混合模型表明,不仅 SSU、LSU 和 ITS 区域受到定性和/或定量不同的约束进化,而且这些区域内也存在显著的异质性。系统发育分析表明,Mortierella 属相对于 Dissophora、Gamsiella 和 Lobosporangium 属是并系的,这与以前基于形态的 Mortierella 分类学相矛盾。基于树结构和表型特征,我们识别出 12 个主要的分支,我们试图对其进行表型相似性总结。M. longicollis 与外群 Rhizopus oryzae 密切相关,表明它属于毛霉目。我们的研究结果表明,以前分类 Mortierellales 中使用的特征高度同形,Mortierellales 需要重新分类,需要识别新的、具有系统发育信息的表型特征,而分子系统发育学应发挥决定性作用。