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首页> 外文期刊>Applied and Environmental Microbiology >Testing for bacterial resistance to arsenic in monitoring well water by the direct viable counting method.
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Testing for bacterial resistance to arsenic in monitoring well water by the direct viable counting method.

机译:通过直接可行的计数方法测试监测井水中细菌对砷的抗性。

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摘要

Direct viable counting of metal-resistant bacteria (DVCMR) has been found to be useful in both enumerating and differentiating metal-resistant and metal-sensitive strains of bacteria. The DVCMR bioassay was used to detect effects of low and high concentrations of arsenic and arsenicals on bacterial populations in groundwater. The level of resistance of the bacterial populations to arsenate was determined by the DVCMR bioassay, and the results showed a linear correlation with the total arsenic concentrations in the monitoring well water samples; no correlation was observed by culture methods with the methods employed. Bacteria resistant to 2,000 micrograms of arsenate per ml were isolated from all monitoring well water samples studied. Strains showed similar antibiotic and heavy-metal profiles, suggesting that the arsenic was not a highly selective pressure for arsenic alone. The monitoring well water samples were amended with arsenate and nutrients to determine the biotransformation mechanisms involved. Preliminary results suggest that bacteria indigenous to the monitoring well water samples did not directly transform, i.e., precipitate or volatilize, dissolved arsenic. It was concluded that arsenic contamination of the groundwater can be monitored by the DVCMR bioassay.
机译:已经发现对金属抗性细菌(DVCMR)的直接可行计数可用于枚举和区分细菌的金属抗性和金属敏感性菌株。 DVCMR生物测定法用于检测低浓度和高浓度的砷和砷对地下水中细菌种群的影响。通过DVCMR生物测定法确定细菌种群对砷的抗性水平,结果显示与监测井水样品中总砷浓度呈线性相关。培养方法与所采用的方法没有相关性。从所研究的所有监测井水样品中分离出对每毫升2,000微克砷酸盐有抵抗力的细菌。菌株显示出相似的抗生素和重金属特征,表明砷并不是仅对砷具有高选择性的压力。用砷酸盐和养分对监测井水样品进行修正,以确定所涉及的生物转化机制。初步结果表明,监测井水样品中固有的细菌不会直接转化,即使溶解的砷沉淀或挥发。结论是可以通过DVCMR生物测定法监测地下水的砷污染。

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