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基于 RPB1 和 RPB2 的系统发育分析支持了一个包括所有农业和医学上重要的镰孢菌的分支的中白垩世起源。

Phylogenetic analyses of RPB1 and RPB2 support a middle Cretaceous origin for a clade comprising all agriculturally and medically important fusaria.

机构信息

Bacterial Foodborne Pathogens and Mycology Research Unit, National Center for Agricultural Utilization Research, US Department of Agriculture, Agricultural Research Service, 1815 North University Street, Peoria, IL 61604, USA.

出版信息

Fungal Genet Biol. 2013 Mar;52:20-31. doi: 10.1016/j.fgb.2012.12.004. Epub 2013 Jan 26.

Abstract

Fusarium (Hypocreales, Nectriaceae) is one of the most economically important and systematically challenging groups of mycotoxigenic phytopathogens and emergent human pathogens. We conducted maximum likelihood (ML), maximum parsimony (MP) and Bayesian (B) analyses on partial DNA-directed RNA polymerase II largest (RPB1) and second largest subunit (RPB2) nucleotide sequences of 93 fusaria to infer the first comprehensive and well-supported phylogenetic hypothesis of evolutionary relationships within the genus and 20 of its near relatives. Our analyses revealed that Cylindrocarpon formed a basal monophyletic sister to a 'terminal Fusarium clade' (TFC) comprising 20 strongly supported species complexes and nine monotypic lineages, which we provisionally recognize as Fusarium (hypothesis F1). The basal-most divergences within the TFC were only significantly supported by Bayesian posterior probabilities (B-PP 0.99-1). An internode of the remaining TFC, however, was strongly supported by MP and ML bootstrapping and B-PP (hypothesis F2). Analysis of seven Fusarium genome sequences and Southern analysis of fusaria elucidated the distribution of genes required for synthesis of 26 families of secondary metabolites within the phylogenetic framework. Diversification time estimates date the origin of the TFC to the middle Cretaceous 91.3 million years ago. We also dated the origin of several agriculturally important secondary metabolites as well as the lineage responsible for Fusarium head blight of cereals. Dating of several plant-associated species complexes suggests their evolution may have been driven by angiosperm diversification during the Miocene. Our results support two competing hypotheses for the circumscription of Fusarium and provide a framework for future comparative phylogenetic and genomic analyses of this agronomically and medically important genus.

摘要

镰刀菌(Hypocreales,Nectriaceae)是最重要的经济和系统挑战的产毒植物病原体和新兴人类病原体群之一。我们对 93 种镰刀菌的部分 DNA 指导的 RNA 聚合酶 II 最大(RPB1)和第二大亚基(RPB2)核苷酸序列进行了最大似然(ML)、最大简约(MP)和贝叶斯(B)分析,以推断该属内和 20 个近缘种的第一个全面且得到充分支持的进化关系系统发育假说。我们的分析表明,旋孢腔菌形成了一个基本的单系姐妹群,与一个由 20 个强烈支持的种复合体和 9 个单型谱系组成的“末端镰刀菌群”(TFC),我们暂时将其识别为镰刀菌(假说 F1)。TFC 内最基部的分歧仅得到贝叶斯后验概率(B-PP 0.99-1)的显著支持。然而,TFC 剩余的一个分支节点得到了 MP 和 ML 自举支持和 B-PP(假说 F2)的强烈支持。对七个镰刀菌基因组序列的分析和镰刀菌的 Southern 分析阐明了在系统发育框架内合成 26 类次生代谢产物所需基因的分布。多样化时间估计将 TFC 的起源追溯到白垩纪中期的 9130 万年前。我们还追溯了几种农业上重要的次生代谢产物以及负责谷物赤霉病的谱系的起源。对几个与植物相关的种复合体的年代测定表明,它们的进化可能是由中新世被子植物多样化驱动的。我们的结果支持了两种关于镰刀菌界限的竞争假说,并为未来对这个具有农业和医学重要性的属进行比较系统发育和基因组分析提供了框架。

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