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首页> 外文期刊>Extremophiles: Life under extreme conditions >High-quality draft genome sequence of Pseudomonas aeruginosa san ai, an environmental isolate resistant to heavy metals
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High-quality draft genome sequence of Pseudomonas aeruginosa san ai, an environmental isolate resistant to heavy metals

机译:Pseudomonas Aeruginosa San Ai的高质量基因组序列,对重金属的环境分离

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The strain Pseudomonas aeruginosa san ai, isolated from an extreme environment (industrial mineral cutting oil, pH 10), is able to survive and persist in the presence of a variety of pollutants such as heavy metals and organic chemicals. The genome of P. aeruginosa san ai is 6.98 Mbp long with a GC content of 66.08% and 6485 protein encoding genes. A large number of genes associated with proteins, responsible for microbial resistance to heavy metal ions andinvolved in catabolism of toxic aromatic organic compounds were identified. P.aeruginosa san ai is a highly cadmium-resistant strain. Proteome analysis of biomass after cadmium exposal confirmed a high tolerance to sublethal concentrations of cadmium (100mg/L), based on: extracellular biosorption, bioaccumulation, biofilm formation, controlled siderophore production and a pronounced metalloprotein synthesis. Proteins responsible for survival in osmostress conditions during exposure to elevated concentrations of cadmium (200mg/L) demonstrate a strong genetic potential of P. aeruginosa san ai for survival and adaptation. Sequencing of P. aeruginosa san ai genome provides valuable insights into the evolution and adaptation of this microbe to environmental extremes at the whole-genome level, as well as how to optimally use the strain in bioremediation of chemically polluted sites.
机译:来自极端环境(工业矿物切割油,pH10)的菌株假单胞菌铜绿假单胞菌San Ai能够在各种污染物如重金属和有机化学物质的存在下生存和持续存在。 P.铜绿假单胞菌SAN AI的基因组为6.98Mbp,GC含量为66.08%和6485蛋白编码基因。鉴定了与蛋白质相关的大量基因,负责对重金属离子的微生物耐药性和毒性有毒有机化合物的分解代谢。 P.Aeruginosa San Ai是一种高度耐高采烈的菌株。基于以下:细胞外生物累积,生物累积,生物膜形成,控制的二氧化碳生产和明显的金属蛋白合成,对镉(100mg / L)的亚硫酰浓度的高耐受性耐受性高耐受性负责在暴露于升高的镉(200mg / L)期间的Osmostress条件中存活的蛋白质表明了P. Aeruginosa San AI的强遗传潜力,用于存活和适应。 P. Aerginosa San Ai Genome的测序为整个基因组水平的环境极值的进化和调整提供了有价值的见解,以及如何最佳地利用化学污染的位点的生物修复中的菌株。

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