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从分子数据推断多孔菌属真菌 Pycnoporus 的系统地理学关系。

Phylogeographic relationships in the polypore fungus Pycnoporus inferred from molecular data.

机构信息

INRA, UMR 1163 de Biotechnologie des Champignons Filamenteux, ESIL, Marseille, France.

出版信息

FEMS Microbiol Lett. 2011 Dec;325(1):37-48. doi: 10.1111/j.1574-6968.2011.02412.x. Epub 2011 Oct 3.

DOI:10.1111/j.1574-6968.2011.02412.x
PMID:22092860
Abstract

The genus Pycnoporus forms a group of four species known especially for producing high redox potential laccases suitable for white biotechnology. A sample of 36 Pycnoporus strains originating from different geographical areas was studied to seek informative molecular markers for the typing of new strains in laboratory culture conditions and to analyse the phylogeographic relationships in this cosmopolitan group. ITS1-5.8S-ITS2 ribosomal DNA and partial regions of β-tubulin and laccase lac3-1 gene were sequenced. Phylogenetic trees inferred from these sequences clearly differentiated the group of Pycnoporus cinnabarinus strains from the group of Pycnoporus puniceus strains into strongly supported clades (100% bootstrap value). Molecular clustering based on lac 3-1 sequences enabled the distribution of Pycnoporus sanguineus and Pycnoporus coccineus through four distinct, well supported clades and sub-clades. A neotropical sub-clade, grouping the P. sanguineus strains from French Guiana and Venezuela, corresponded to P. sanguineus sensu stricto. A paleotropical sub-clade, clustering the strains from Madagascar, Vietnam and New Caledonia, was defined as Pycnoporus cf. sanguineus. The Australian clade corresponded to P. coccineus sensu stricto. The Eastern Asian region clade, clustering the strains from China and Japan, formed a P. coccineus-like group. Laccase gene (lac 3-1) analysis within the Pycnoporus species can highlight enzyme functional diversity associated with biogeographical origin.

摘要

该 Pycnoporus 属形成了一组四个物种,特别是以产生高氧化还原电位漆酶而闻名,这些漆酶适用于白色生物技术。研究了来自不同地理区域的 36 株 Pycnoporus 菌株,以寻找新的实验室培养条件下菌株分型的信息分子标记,并分析该世界性群体的系统地理关系。ITS1-5.8S-ITS2 核糖体 DNA 和β-微管蛋白和漆酶 lac3-1 基因的部分区域进行了测序。从这些序列推断的系统发育树清楚地将 Pycnoporus cinnabarinus 菌株组与 Pycnoporus puniceus 菌株组分为强支持的分支(100%自举值)。基于 lac 3-1 序列的分子聚类使 Pycnoporus sanguineus 和 Pycnoporus coccineus 得以通过四个不同的、强有力的分支和子分支进行分布。一个新热带亚分支,将来自法属圭亚那和委内瑞拉的 P. sanguineus 菌株分组,对应于 Pycnoporus sanguineus sensu stricto。一个古热带亚分支,将来自马达加斯加、越南和新喀里多尼亚的菌株聚类,被定义为 Pycnoporus cf. sanguineus。澳大利亚分支对应于 Pycnoporus coccineus sensu stricto。东亚地区分支,将来自中国和日本的菌株聚类,形成了一个类似 Pycnoporus coccineus 的群体。漆酶基因(lac 3-1)在 Pycnoporus 种内的分析可以突出与生物地理起源相关的酶功能多样性。

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