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Complete Genome Sequence of 3-Chlorobenzoate-Degrading Bacterium Cupriavidus necator NH9 and Reclassification of the Strains of the Genera Cupriavidus and Ralstonia Based on Phylogenetic and Whole-Genome Sequence Analyses

机译:基于系统发育和全基因组序列分析的3-氯苯甲酸酯降解细菌铜杯菌NH9的完整基因组序列以及铜杯菌和罗氏菌属菌株的重分类

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摘要

Cupriavidus necator NH9, a 3-chlorobenzoate (3-CB)-degrading bacterium, was isolated from soil in Japan. In this study, the complete genome sequence of NH9 was obtained via PacBio long-read sequencing to better understand the genetic components contributing to the strain's ability to degrade aromatic compounds, including 3-CB. The genome of NH9 comprised two circular chromosomes (4.3 and 3.4 Mb) and two circular plasmids (427 and 77 kb) containing 7,290 coding sequences, 15 rRNA and 68 tRNA genes. Kyoto Encyclopedia of Genes and Genomes pathway analysis of the protein-coding sequences in NH9 revealed a capacity to completely degrade benzoate, 2-, 3-, or 4-hydroxybenzoate, 2,3-, 2,5-, or 3,4-dihydroxybenzoate, benzoylformate, and benzonitrile. To validate the identification of NH9, phylogenetic analyses (16S rRNA sequence-based tree and multilocus sequence analysis) and whole-genome sequence analyses (average nucleotide identity, percentage of conserved proteins, and tetra-nucleotide analyses) were performed, confirming that NH9 is a C. necator strain. Over the course of our investigation, we noticed inconsistencies in the classification of several strains that were supposed to belong to the two closely-related genera Cupriavidus and Ralstonia. As a result of whole-genome sequence analysis of 46 Cupriavidus strains and 104 Ralstonia strains, we propose that the taxonomic classification of 41 of the 150 strains should be changed. Our results provide a clear delineation of the two genera based on genome sequences, thus allowing taxonomic identification of strains belonging to these two genera.
机译:从日本的土壤中分离出了可降解3-氯苯甲酸酯(3-CB)的Cupriavidus necator NH9。在这项研究中,NH9的完整基因组序列是通过PacBio长读测序获得的,目的是更好地了解导致菌株降解包括3-CB在内的芳香族化合物能力的遗传成分。 NH9的基因组包含两个环状染色体(4.3和3.4 Mb)和两个环状质粒(427和77 kb),包含7290个编码序列,15个rRNA和68个tRNA基因。关于NH9中蛋白质编码序列的《京都基因与基因组百科全书》通路分析显示,能够完全降解苯甲酸酯,2-,3-或4-羟基苯甲酸酯,2,3-,2,5-或3,4-二羟基苯甲酸酯,苯甲酰基甲酸酯和苄腈。为了验证NH9的鉴定,进行了系统发育分析(基于16S rRNA序列的树和多基因座序列分析)和全基因组序列分析(平均核苷酸同一性,保守蛋白的百分比以及四核苷酸分析),确认NH9是C.necator菌株。在我们的调查过程中,我们注意到几种菌株的分类不一致,这些菌株应该属于两个紧密相关的铜杯菌属和拉尔斯顿氏菌属。作为对46个Cupriavidus菌株和104个Ralstonia菌株的全基因组序列分析的结果,我们建议应更改150个菌株中41个菌株的分类学分类。我们的结果提供了基于基因组序列的两个属的清晰描述,从而可以对属于这两个属的菌株进行分类学鉴定。

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