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全基因组测序和系统发育基因组分析支持将属 拆分为两个属。

Whole genome sequencing and phylogenomic analysis show support for the splitting of genus .

机构信息

Ottawa Research and Development Centre, Agriculture and Agri-Food Canada, 960 Carling Avenue, Ottawa, Ontario, K1A 0C6 Canada.

Crop Improvement and Protection Research, Agricultural Research Service, United States Department of Agriculture, Salinas, California 93905, USA.

出版信息

Mycologia. 2022 May-Jun;114(3):501-515. doi: 10.1080/00275514.2022.2045116. Epub 2022 May 6.

Abstract

The genus (nom. cons.) sensu lato (s.l.) is composed of many important species of plant pathogens. Early molecular phylogenetic studies suggested paraphyly of , which led to a formal proposal by Uzuhashi and colleagues in 2010 to split the genus into sensu stricto (s.s.), (= ), and using morphological characters and phylogenies of the mt cytochrome oxidase subunit 2 () and D1-D2 domains of nuc 28S rDNA. Although the split was fairly justified by the delineating morphological characters, there were weaknesses in the molecular analyses, which created reluctance in the scientific community to adopt these new genera for the description of new species. In this study, this issue was addressed using phylogenomics. Whole genomes of 109 strains of and close relatives were sequenced, assembled, and annotated. These data were combined with 10 genomes sequenced in previous studies. Phylogenomic analyses were performed with 148 single-copy genes represented in at least 90% of the taxa in the data set. The results showed support for the division of s.l. The status of alternative generic names that have been used for species of in the past (e.g., ) was investigated. Based on our molecular analyses and review of the generic concepts, we urge the scientific community to adopt the generic names , and their concepts as proposed by Uzuhashi and colleagues in 2010 in their work going forward. In order to consolidate the taxonomy of these genera, some of the recently described spp. are transferred to and .

摘要

(统称)属由许多重要的植物病原菌种组成。早期的分子系统发育研究表明,属是并系的,这导致 Uzuhashi 及其同事于 2010 年正式提出将该属分为狭义的属、属(=)和属,使用形态特征和线粒体细胞色素氧化酶亚基 2(mtCOX2)和核 28S rDNA 的 D1-D2 区的系统发育。虽然这种划分在形态特征上是合理的,但分子分析存在弱点,这使得科学界不愿意采用这些新属来描述新种。在本研究中,通过系统基因组学解决了这个问题。对 109 株和近缘种的 109 株菌株进行了全基因组测序、组装和注释。这些数据与之前研究中测序的 10 个基因组相结合。使用至少在数据集中 90%的分类群中存在的 148 个单拷贝基因进行了系统基因组学分析。结果支持 属的划分。调查了过去用于属种的替代属名的地位(例如)。基于我们的分子分析和对属概念的回顾,我们敦促科学界在未来的工作中采用 Uzuhashi 及其同事于 2010 年提出的属名和概念。为了巩固这些属的分类学,一些最近描述的 spp.被转移到属和属。

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