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Comprehensive genomic and phenotypic metal resistance profile of Pseudomonas putida strain S13.1.2 isolated from a vineyard soil

机译:从葡萄园土壤分离的恶臭假单胞菌S13.1.2的综合基因组和表型金属抗性概况

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摘要

Trace metals are required in many cellular processes in bacteria but also induce toxic effects to cells when present in excess. As such, various forms of adaptive responses towards extracellular trace metal ions are essential for the survival and fitness of bacteria in their environment. A soil Pseudomonas putida, strain S13.1.2 has been isolated from French vineyard soil samples, and shown to confer resistance to copper ions. Further investigation revealed a high capacity to tolerate elevated concentrations of various heavy metals including nickel, cobalt, cadmium, zinc and arsenic. The complete genome analysis was conducted using single-molecule real-time (SMRT) sequencing and the genome consisted in a single chromosome at the size of 6.6 Mb. Presence of operons and gene clusters such as cop, cus, czc, nik, and asc systems were detected and accounted for the observed resistance phenotypes. The unique features in terms of specificity and arrangements of some genetic determinants were also highlighted in the study. Our findings has provided insights into the adaptation of this strain to accumulation and persistence of copper and other heavy metals in vineyard soil environment.Electronic supplementary materialThe online version of this article (doi:10.1186/s13568-016-0269-x) contains supplementary material, which is available to authorized users.
机译:细菌的许多细胞过程中都需要微量金属,但过量存在时,也会对细胞产生毒性作用。这样,对细胞外痕量金属离子的各种形式的适应性应答对于细菌在其环境中的存活和适应是必不可少的。从法国葡萄园的土壤样品中分离出土壤假单胞菌恶臭假单胞菌S13.1.2,并显示出对铜离子的抗性。进一步的研究表明,它具有较高的耐受各种重金属(包括镍,钴,镉,锌和砷)浓度的能力。使用单分子实时(SMRT)测序进行完整的基因组分析,基因组由6.6Mb的单个染色体组成。检测到操纵子和基因簇(例如cop,cus,czc,nik和asc系统)的存在,并解释了观察到的抗性表型。该研究还强调了一些遗传决定簇在特异性和排列方面的独特特征。我们的发现为深入了解这种菌株适应葡萄园土壤环境中铜和其他重金属的积累和持久性提供了见识。电子补充材料本文的在线版本(doi:10.1186 / s13568-016-0269-x)包含补充材料,可供授权用户使用。

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