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利用全基因组序列构建叶状红球菌及红球菌属的分子系统发育框架。

Use of whole genome sequences to develop a molecular phylogenetic framework for Rhodococcus fascians and the Rhodococcus genus.

作者信息

Creason Allison L, Davis Edward W, Putnam Melodie L, Vandeputte Olivier M, Chang Jeff H

机构信息

Department of Botany and Plant Pathology, Oregon State University Corvallis, OR, USA ; Molecular and Cellular Biology Program, Oregon State University Corvallis, OR, USA.

Department of Botany and Plant Pathology, Oregon State University Corvallis, OR, USA.

出版信息

Front Plant Sci. 2014 Aug 19;5:406. doi: 10.3389/fpls.2014.00406. eCollection 2014.

Abstract

The accurate diagnosis of diseases caused by pathogenic bacteria requires a stable species classification. Rhodococcus fascians is the only documented member of its ill-defined genus that is capable of causing disease on a wide range of agriculturally important plants. Comparisons of genome sequences generated from isolates of Rhodococcus associated with diseased plants revealed a level of genetic diversity consistent with them representing multiple species. To test this, we generated a tree based on more than 1700 homologous sequences from plant-associated isolates of Rhodococcus, and obtained support from additional approaches that measure and cluster based on genome similarities. Results were consistent in supporting the definition of new Rhodococcus species within clades containing phytopathogenic members. We also used the genome sequences, along with other rhodococcal genome sequences to construct a molecular phylogenetic tree as a framework for resolving the Rhodococcus genus. Results indicated that Rhodococcus has the potential for having 20 species and also confirmed a need to revisit the taxonomic groupings within Rhodococcus.

摘要

对由病原菌引起的疾病进行准确诊断需要稳定的物种分类。 fascians红球菌是其定义不明确的属中唯一有记录的能够在多种重要农作物上引发疾病的成员。对从患病植物相关红球菌分离株生成的基因组序列进行比较,发现其遗传多样性水平表明它们代表多个物种。为了验证这一点,我们基于来自植物相关红球菌分离株的1700多个同源序列构建了一棵树,并从基于基因组相似性进行测量和聚类的其他方法中获得了支持。结果一致支持在包含植物致病成员的进化枝内定义新的红球菌物种。我们还利用这些基因组序列以及其他红球菌基因组序列构建了一个分子系统发育树,作为解决红球菌属问题的框架。结果表明红球菌可能有20个物种,也证实了有必要重新审视红球菌属内的分类分组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a055/4154481/8c826974ff9f/fpls-05-00406-g0001.jpg

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