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基于基因组信息的慢生根瘤菌分类学:未来如何发展?

Genome-informed Bradyrhizobium taxonomy: where to from here?

机构信息

Department of Biochemistry, Genetics and Microbiology, Forestry and Agricultural Biotechnology Institute (FABI), University of Pretoria, Pretoria, South Africa.

Department of Biochemistry, Genetics and Microbiology, Forestry and Agricultural Biotechnology Institute (FABI), University of Pretoria, Pretoria, South Africa; Biotechnology Platform, Agricultural Research Council Onderstepoort Veterinary Institute (ARC-OVI), Onderstepoort 0110, South Africa.

出版信息

Syst Appl Microbiol. 2019 Jul;42(4):427-439. doi: 10.1016/j.syapm.2019.03.006. Epub 2019 Apr 4.

Abstract

Bradyrhizobium is thought to be the largest and most diverse rhizobial genus, but this is not reflected in the number of described species. Although it was one of the first rhizobial genera recognised, its taxonomy remains complex. Various contemporary studies are showing that genome sequence information may simplify taxonomic decisions. Therefore, the growing availability of genomes for Bradyrhizobium will likely aid in the delineation and characterization of new species. In this study, we addressed two aims: first, we reviewed the availability and quality of available genomic resources for Bradyrhizobium. This was achieved by comparing genome sequences in terms of sequencing technologies used and estimated level of completeness for inclusion in genome-based phylogenetic analyses. Secondly, we utilized these genomes to investigate the taxonomic standing of Bradyrhizobium in light of its diverse lifestyles. Although genome sequences differed in terms of their quality and completeness, our data indicate that the use of these genome sequences is adequate for taxonomic purposes. By using these resources, we inferred a fully resolved, well-supported phylogeny. It separated Bradyrhizobium into seven lineages, three of which corresponded to the so-called supergroups known for the genus. Wide distribution of key lifestyle traits such as nodulation, nitrogen fixation and photosynthesis revealed that these traits have complicated evolutionary histories. We present the first robust Bradyrhizobium species phylogeny based on genome sequence information for investigating the evolution of this important assemblage of bacteria. Furthermore, this study provides the basis for using genome sequence information as a resource to make important taxonomic decisions, particularly at the species and genus levels.

摘要

慢生根瘤菌被认为是最大和最多样化的根瘤菌属,但这并没有反映在已描述的物种数量上。尽管它是最早被识别的根瘤菌属之一,但它的分类仍然很复杂。各种当代研究表明,基因组序列信息可能简化分类决策。因此,越来越多的慢生根瘤菌基因组的可用性可能有助于划定和描述新物种。在这项研究中,我们解决了两个目标:首先,我们审查了慢生根瘤菌可用的基因组资源的可用性和质量。这是通过比较用于基因组分析的测序技术和纳入基因组系统发育分析的估计完整性水平来实现的。其次,我们利用这些基因组来研究慢生根瘤菌的分类地位,因为它具有多样化的生活方式。尽管基因组序列在质量和完整性方面存在差异,但我们的数据表明,这些基因组序列的使用足以满足分类目的。通过使用这些资源,我们推断出一个完全解决的、支持良好的系统发育关系。它将慢生根瘤菌分为七个谱系,其中三个与该属的所谓超级群相对应。广泛分布的关键生活方式特征,如结瘤、固氮和光合作用,表明这些特征具有复杂的进化历史。我们提出了第一个基于基因组序列信息的稳健的慢生根瘤菌种系统发育关系,用于研究这组重要细菌的进化。此外,这项研究为利用基因组序列信息作为资源来做出重要的分类决策提供了基础,特别是在种和属的水平上。

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