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A salt tolerant Enterobacter cloacae mutant for bioaugmentation of petroleum- and salt-contaminated soil

机译:耐盐阴沟肠杆菌突变体,用于石油和盐污染土壤的生物强化

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摘要

A NaCl-tolerant Enterobacter cloacae variant (MU-1) was obtained by mutagenesis using atmospheric pressure glow discharge (APGD) plasmas. The variant exhibited regular growth behavior in slurry cultivation and reached a cell density of 5.72 x 10~8 and 6.44 x 10~8 colony-forming units (CFU/mL) in the presence and absence of 7.5% NaCl, respectively, when crude oil was used as the sole carbon source (crude oil/soil = 1.5%). The total petroleum hydrocarbon (TPH) degradation percentage was 7.94% with mutant MU-1 in the presence of 7.5% NaCl whereas that of the wild-type strain was 3.17%. When cultivated in saline medium, MU-1 showed a slight change in membrane permeability but significant increases in both the K~+ concentration inside the cell membrane (from 234.24 to 1422.88 ppm/g dry cell weight in the first 2 h) and the exopolysaccharide (EPS) level outside the membrane (from 1350 to 1825 mg/g dry cell weight). The rapid increase in K~+ inside the cell and the simultaneous accumulation of EPS outside the cell may be responsible for maintaining the osmotic balance during saline cultivation, and this could facilitate the microbial growth and TPH degradation of MU-1.
机译:通过使用大气压辉光放电(APGD)血浆诱变获得耐NaCl的阴沟肠杆菌变种(MU-1)。该变体在浆液培养中表现出规则的生长行为,当存在和不存在7.5%NaCl时,当原油存在时,其细胞密度分别达到5.72 x 10〜8和6.44 x 10〜8菌落形成单位(CFU / mL)。被用作唯一的碳源(原油/土壤= 1.5%)。在有7.5%NaCl的情况下,突变MU-1的总石油烃(TPH)降解率为7.94%,而野生型菌株的降解率为3.17%。当在盐水培养基中培养时,MU-1的膜通透性略有变化,但细胞膜内的K〜+浓度(前2 h从234.24 ppm / g干细胞重量)显着增加(胞外多糖从234.24 ppm到1422.88 ppm / g)。 (EPS)在膜外的水平(1350至1825 mg / g干细胞重量)。细胞内K〜+的快速增加和细胞外EPS的同时积累可能是维持盐分培养期间渗透平衡的原因,这可能促进MU-1的微生物生长和TPH降解。

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