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Ochrobactrum quorumnocens sp. nov., a quorum quenching bacterium from the potato rhizosphere, and comparative genome analysis with related type strains

机译:羊齿nov。,一种来自马铃薯根际的群体猝灭细菌,以及与相关类型菌株的比较基因组分析

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摘要

Ochrobactrum spp. are ubiquitous bacteria attracting growing attention as important members of microbiomes of plants and nematodes and as a source of enzymes for biotechnology. Strain Ochrobactrum sp. A44T was isolated from the rhizosphere of a field-grown potato in Gelderland, the Netherlands. The strain can interfere with quorum sensing (QS) of Gram-negative bacteria through inactivation of N-acyl homoserine lactones (AHLs) and protect plant tissue against soft rot pathogens, the virulence of which is governed by QS. Phylogenetic analysis based on 16S rRNA gene alone and concatenation of 16S rRNA gene and MLSA genes (groEL and gyrB) revealed that the closest relatives of A44T are O. grignonense OgA9aT, O. thiophenivorans DSM 7216T, O. pseudogrignonense CCUG 30717T, O. pituitosum CCUG 50899T, and O. rhizosphaerae PR17T. Genomes of all six type strains were sequenced, significantly expanding the possibility of genome-based analyses in Ochrobactrum spp. Average nucleotide identity (ANIb) and genome-to-genome distance (GGDC) values for A44T and the related strains were below the single species thresholds (95% and 70%, respectively), with the highest scores obtained for O. pituitosum CCUG 50899T (87.31%; 35.6%), O. rhizosphaerae PR17T (86.80%; 34.3%), and O. grignonense OgA9aT (86.30%; 33.6%). Distinction of A44T from the related type strains was supported by chemotaxonomic and biochemical analyses. Comparative genomics revealed that the core genome for the newly sequenced strains comprises 2731 genes, constituting 50–66% of each individual genome. Through phenotype-to-genotype study, we found that the non-motile strain O. thiophenivorans DSM 7216T lacks a cluster of genes related to flagella formation. Moreover, we explored the genetic background of distinct urease activity among the strains. Here, we propose to establish a novel species Ochrobactrum quorumnocens, with A44T as the type strain (= LMG 30544T = PCM 2957T).
机译:ch骨菌属作为植物和线虫微生物组的重要成员,以及作为生物技术酶的来源,无处不在的细菌引起了越来越多的关注。应变O骨菌A44 T 是从荷兰海尔德兰的田间马铃薯根际中分离出来的。该菌株可通过使N-酰基高丝氨酸内酯(AHL)失活而干扰革兰氏阴性菌的群体感应(QS),并保护植物组织免受软腐病原体的侵害,而软腐病原体的毒力由QS控制。仅基于16S rRNA基因以及16S rRNA基因和MLSA基因(groEL和gyrB)的连接进行的系统发育分析表明,A44 T 的近亲是O. grignonense OgA9a T ,O.thiophenivorans DSM 7216 T ,P.pseudogrignonense CCUG 30717 T ,p.itotuitusum CCUG 50899 T 和O. rhizosphaerae PR17 T 。对所有六种类型菌株的基因组进行了测序,从而大大扩展了O牙菌属中基于基因组分析的可能性。 A44 T 及其相关菌株的平均核苷酸同一性(ANIb)和基因组与基因组的距离(GGDC)值低于单一物种阈值(分别为95%和70%),最高 O 获得的分数。 pituitosum CCUG 50899 T (87.31%; 35.6%), O rhizosphaerae PR17 T (86.80%; 34.3%)和 O grignonense OgA9a T (86.30%; 33.6%)。化学分类和生化分析支持A44 T 与相关型菌株的区别。比较基因组学表明,新测序菌株的核心基因组包含2731个基因,占每个单独基因组的50-66%。通过表型到基因型的研究,我们发现了非运动株 O thiophenivorans DSM 7216 T 缺乏与鞭毛形成相关的基因簇。此外,我们探索了菌株之间不同脲酶活性的遗传背景。在这里,我们建议建立一个新的物种 Ochrobactrum quorumnocens ,以A44 T 为类型菌株(= LMG 30544 T = PCM 2957 T )。

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