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首页> 外文期刊>Systematic and Applied Microbiology >Bradyrhizobium valentinum sp nov., isolated from effective nodules of Lupinus mariae-josephae, a lupine endemic of basic-lime soils in Eastern Spain
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Bradyrhizobium valentinum sp nov., isolated from effective nodules of Lupinus mariae-josephae, a lupine endemic of basic-lime soils in Eastern Spain

机译:Bradyrhizobium v​​alentinum sp nov。,从西班牙东部的羽扇豆碱石灰土特有的羽扇豆(Lupinus mariae-Josephae)的有效根瘤中分离出来

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Bacterial strains isolated from nitrogen-fixing nodules of Lupinus mariae-josephae have been characterized following genetic, phenotypic and symbiotic approaches. Analysis of 16S rRNA genes placed them in a group together with Bradyrhizobium elkanii USDA 76(T), B. pachyrhizi PAC48(T), B. jicamae PAC68(T), 'B. retamae' Ro19(T) and B. lablabi CCBAU 23086(T) with over 99.0% identity. Phylogenetic analysis of concatenated housekeeping genes, recA, atpD and glnII, suggested that L. mariae-josephae strains represent a new Bradyrhizobium species, closely related to B. lablabi CCBAU 23086(T), B. jicamae PAC68(T) and 'B. retamae' Ro19(T) with 92.1, 91.9 and 90.8% identity, respectively. These results are consistent with overall genomic identities calculated as Average Nucleotide Identity (ANIm) using draft genomic sequences obtained for relevant strains. While L. mariae-josephae strains LmjM3(T)/LmjM6 exhibited a 99.2% ANIm value, they were significantly distant (93% ANIm) from type strains of their closest species ('B. retamae' Ro19(T), B. lablabi CCBAU 23086(T) and B. jicamae PAC68(T)). Whole-cell matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (WC-MALDI-TOF-MS) analysis of proteomic patterns of the same strains was consistent with these results. The symbiosis-related genes nodC, nodA and nifH genes from strains nodulating L mariae-josephae were phylogenetically related to those from 'B. retamae' Ro19(T), but divergent from those of strains that nodulate other lupine species. Based on genetic, genomic, proteomic and phenotypic data presented in this study, L. mariae-josephae nodulating strains LmjM3(T), LmjM6 and LmjM2 should be grouped within a new species for which the name Bradyrhizobium valentinum sp. nov. is proposed (type strain LmjM3(T) = CECT 8364(T), LMG 2761(T))
机译:已经从遗传,表型和共生方法表征了从滨海羽扇豆固氮结节中分离出的细菌菌株。对16S rRNA基因的分析将它们与Bradyrhizobium elkanii USDA 76(T),B。pachyrhizi PAC48(T),B。jicamae PAC68(T),'B放在一起。 retamae'Ro19(T)和B.lablabi CCBAU 23086(T)具有99.0%以上的同一性。串联管家基因recA,atpD和glnII的系统进化分析表明,mariese-josephae菌株代表了一种新的Bradyrhizobium菌种,与Lablabi CCBAU 23086(T),jicamae PAC68(T)和'B. retamae'Ro19(T)分别具有92.1、91.9和90.8%的同一性。这些结果与使用相关菌株获得的基因组草图序列以平均核苷酸同一性(ANIm)计算的总体基因组同一性一致。尽管玛丽亚乳杆菌的LmjM3(T)/ LmjM6菌株表现出99.2%的ANIm值,但与它们最接近的物种('B. retamae'Ro19(T),B.拉巴比CCBAU 23086(T)和吉氏芽孢杆菌PAC68(T))。全细胞基质辅助激光解吸/电离飞行时间质谱(WC-MALDI-TOF-MS)分析同一菌株的蛋白质组模式与这些结果相符。来源于结核分枝杆菌的菌株与共生相关的基因nodC,nodA和nifH基因与'B的系统发育相关。 Retamae'Ro19(T),但与结节其他羽扇豆物种的菌株不同。根据本研究提出的遗传,基因组,蛋白质组学和表型数据,应将玛丽亚乳杆菌的结瘤菌株LmjM3(T),LmjM6和LmjM2归为一个新物种,其名称为Bradyrhizobium v​​alentinum sp。十一月被提议(类型株LmjM3(T)= CECT 8364(T),LMG 2761(T))

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