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A halotolerant Alcanivorax sp. strain with potential application in saline soil remediation

机译:耐盐Alcanivorax sp。菌株在盐渍土壤修复中的潜在应用

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Biodegradation of petroleum compounds in saline environments seems intricate and needs more attention. In this study, tetracosane was used to enrich alkane-degrading bacteria from oil-contaminated saline soils. Among the isolates, strain Qtet3, with the highest 16s rRNA gene sequence similarity to Alcanivorax dieselolei B-5~T, was able to grow at a wide range of NaCl concentrations and was shown by GC analysis to degrade more than 90% of tetracosane in 10 days. This strain has at least two alkB genes and could grow on crude oil and diesel fuel, and utilize various pure aliphatic hydrocarbon substrates (from C_(12) to C_(34)). Highly hydrophobic cell surfaces and lack of significant surface tension reduction in the media suggest that the main mechanism of the cells for accessing substrate is to attach directly to hydrocarbon particles. Application of this strain for remediating crude oil-contaminated soils irrigated with defined saline water demonstrated that this halotolerant bacterium could survive and grow in saline soils irrigated with NaCl solutions up to 5% w/v, with the highest hydrocarbon degradation of 26.1% observed at 2.5% NaCl. This strain is promising for future industrial applications especially in bioremediation of saline soils and wastes.
机译:盐环境中石油化合物的生物降解似乎很复杂,需要更多注意。在这项研究中,十四烷被用于从受油污染的盐渍土壤中富集降解烷烃的细菌。在分离物中,菌株Qtet3与Alcanivorax fuelolei B-5〜T具有最高的16s rRNA基因序列相似性,能够在很宽的NaCl浓度下生长,并且通过GC分析表明,该菌株可降解90%以上的四氢烷。 10天。该菌株至少具有两个alkB基因,可以在原油和柴油上生长,并利用各种纯的脂肪族烃底物(从C_(12)到C_(34))。高度疏水的细胞表面和培养基中缺乏明显的表面张力降低表明,细胞进入底物的主要机理是直接附着在烃颗粒上。将该菌株用于修复用规定的盐水灌溉的原油污染的土壤,证明了这种耐盐细菌可以在用5%w / v的NaCl溶液灌溉的盐渍土壤中生存和生长,最高的碳氢化合物降解率为26.1%。 2.5%氯化钠。该菌株有望用于未来的工业应用,特别是在盐渍土壤和废物的生物修复中。

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