首页> 外文期刊>Annals of microbiology >Bacteria from spent engine-oil-contaminated soils possess dual tolerance to hydrocarbon and heavy metals, and degrade spent oil in the presence of copper, lead, zinc and combinations thereof
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Bacteria from spent engine-oil-contaminated soils possess dual tolerance to hydrocarbon and heavy metals, and degrade spent oil in the presence of copper, lead, zinc and combinations thereof

机译:来自废机油污染土壤的细菌对烃和重金属具有双重耐受性,并且在铜,铅,锌及其组合的存在下降解废油

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We studied the behaviour of 12 metal-resistant bacteria isolated from spent engine oil (SEO)-contaminated soil in Ibadan, Nigeria, during their growth on SEO in mineral salts medium amended singly or in combination with varying concentrations of Cu, Zn and Pb. Kocuria varians PbB3, Kocuria varians MB2 and Achromobacter xylosoxidans CuE2 showed no appreciable growth on SEO even in the absence of metals. Achromobacter xylosoxidans MC1, Achromobacter xylosoxidans CuC3 and Arthrobacter sp. ZnC1 were inhibited by the tested metals in a dose-dependent manner. However, while Acinetobacter sp. ZnB2 and Acinetobacter sp. ZnE3 were similarly inhibited, both degraded appreciable quantities of SEO in the presence of toxic concentrations of Zn2+. Cu2+ at 100?μg?mL?1 has no significant effect on the growth of Acinetobacter calcoaceticus CuD2, which degraded 34.7?% and 33.0?% spent oil, respectively, at 0 and 100?μg?mL?1 Cu2+. SEO degradation by Pseudomonas sp. PbC4 and Burkholderia cepacia MD1 reduced by 34.8?% and 19.8?%, respectively, at the lowest concentration of Pb2+ (200?μg?mL?1) and metal combination (25?μg?mL?1) tested. While the activity of strain PbC4 was inhibited at 600?μg?mL?1 Pb2+, there was no significant difference (P?
机译:我们研究了从尼日利亚废弃的机油(SEO)污染的土壤中分离出来的12种金属抗性细菌的行为,这些细菌在单独或与不同浓度的Cu,Zn和Pb一起改性的无机盐培养基中的SEO上生长。 Kocuria varians PbB3,Kocuria varians MB2和木氧化无色杆菌CuE2在SEO上没有明显的增长,即使没有金属也是如此。木氧化无色杆菌MC1,木氧化无色杆菌CuC3和节杆菌。 ZnC1被测试金属以剂量依赖性方式抑制。然而,不动杆菌属。 ZnB2和不动杆菌ZnE3受到类似的抑制,在有毒浓度的Zn2 +的情况下,两者均降解了相当数量的SEO。 Cu2 +在100?μg?mL?1处对钙乙酸不动杆菌CuD2的生长没有显着影响,在0和100?μg?mL?1 Cu2 +下,它们分别降解了34.7?%和33.0?%的废油。假单胞菌sp SEO降解。在最低浓度的Pb2 +(200?μg?mL?1)和金属组合物(25?μg?mL?1)下,PbC4和洋葱伯克霍尔德菌MD1分别降低了34.8%和19.8%。尽管在600?μg?mL?1 Pb2 +处抑制了PbC4菌株的活性,但在所有浓度的结合金属中,分离物MD1降解的SEO量均无显着差异(P 0.05)。我们的研究结果表明,这些细菌菌株可能是生物修复与金属和碳氢化合物共同污染的位点的潜在候选者,更重要的是,提供了证据表明某些先前归因于群落效应的金属抑制模式也可能与个体降解细菌的生理学有关。株。

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