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重新审视真菌进化:将惩罚似然法应用于贝叶斯真菌系统发育研究,为子囊菌门类群的系统发育关系和分歧时间提供了新视角。

Fungi evolution revisited: application of the penalized likelihood method to a Bayesian fungal phylogeny provides a new perspective on phylogenetic relationships and divergence dates of Ascomycota groups.

作者信息

Padovan Ana Carolina B, Sanson Gerdine F O, Brunstein Adriana, Briones Marcelo R S

机构信息

Departamento de Microbiologia, Imunologia e Parasitologia, Universidade Federal de São Paulo, São Paulo, Brazil.

出版信息

J Mol Evol. 2005 Jun;60(6):726-35. doi: 10.1007/s00239-004-0164-y. Epub 2005 May 16.

DOI:10.1007/s00239-004-0164-y
PMID:15909224
Abstract

The depiction of evolutionary relationships within phylum Ascomycota is still controversial because of unresolved branching orders in the radiation of major taxa. Here we generated a dataset of 166 small subunit (18S) rDNA sequences, representative of all groups of Fungi and used as input in a Bayesian phylogenetic analysis. This phylogeny suggests that Discomycetes are a basal group of filamentous Ascomycetes and probably maintain ancestor characters since their representatives are intermingled among other filamentous fungi. Also, we show that the evolutionary rate heterogeneity within Ascomycota precludes the assumption of a global molecular clock. Accordingly, we used the penalized likelihood method, and for calibration we included a 400 million-year-old Pyrenomycete fossil considering two distinct scenarios found in the literature, one with an estimated date of 1576 Myr for the plant-animal-fungus split and the other with an estimated date of 965 Myr for the animal-fungus split. Our data show that the current classification of the fossil as a Pyrenomycete is not compatible with the second scenario. Estimates under the first scenario are older than dates proposed in previous studies based on small subunit rDNA sequences but support estimates based on multiprotein analysis, suggesting that the radiation of the major Ascomycota groups occurred into the Proterozoic era.

摘要

由于主要类群辐射中未解决的分支顺序,子囊菌门内进化关系的描述仍然存在争议。在这里,我们生成了一个包含166个小亚基(18S)rDNA序列的数据集,这些序列代表了真菌的所有类群,并用作贝叶斯系统发育分析的输入。该系统发育表明,盘菌纲是丝状子囊菌的一个基部类群,并且可能保留了祖先特征,因为它们的代表与其他丝状真菌混在一起。此外,我们表明子囊菌门内的进化速率异质性排除了全局分子钟的假设。因此,我们使用了惩罚似然法,并且为了校准,我们纳入了一个有4亿年历史的核菌纲化石,考虑了文献中发现的两种不同情况,一种是植物 - 动物 - 真菌分化的估计日期为15.76亿年,另一种是动物 - 真菌分化的估计日期为9.65亿年。我们的数据表明,目前将该化石分类为核菌纲与第二种情况不相符。第一种情况下的估计比以前基于小亚基rDNA序列的研究所提出的日期更古老,但支持基于多蛋白分析的估计,这表明主要子囊菌类群的辐射发生在元古代。

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