首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Effects of Heavy Metal Contamination upon Soil Microbes: Lead-induced Changes in General and Denitrifying Microbial Communities as Evidenced by Molecular Markers
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Effects of Heavy Metal Contamination upon Soil Microbes: Lead-induced Changes in General and Denitrifying Microbial Communities as Evidenced by Molecular Markers

机译:重金属污染对土壤微生物的影响:铅诱导的一般和反硝化微生物群落的变化通过分子标记证明

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摘要

Lead (Pb) is a common environmental contaminant found in soils. Unlike other metals, Pb has no biological role, and is potentially toxic to microorganisms. Effects of low (1 ppm) and high (500–2000) levels of lead (Pb) upon the soil microbial community was investigated by the PCR/DGGE analysis of the 16S and nirK gene markers, indicative of general microbial community and denitrifying community, respectively. Community analysis by use of those markers had shown that Pb has detectable effects upon the community diversity even at the lowest concentration tested. Analysis of sample diversity and similarity between the samples suggested that there are several thresholds crossed as metal concentration increase, each causing a substantial change in microbial diversity. Preliminary data obtained in this study suggest that the denitrifying microbial community adapts to elevated levels of Pb by selecting for metal-resistant forms of nitrite reductases.
机译:铅(Pb)是土壤中常见的环境污染物。与其他金属不同,铅没有生物学作用,对微生物可能具有毒性。通过对16S和nirK基因标志物进行PCR / DGGE分析,研究了低(1 ppm)和高(500-2000)铅(Pb)对土壤微生物群落的影响,表明了一般的微生物群落和反硝化群落,分别。通过使用这些标记进行的社区分析表明,即使在最低测试浓度下,Pb对社区多样性也具有可检测的影响。对样品多样性和样品之间相似性的分析表明,随着金属浓度的增加,存在多个交叉的阈值,每个阈值都会导致微生物多样性发生实质性变化。在这项研究中获得的初步数据表明,反硝化微生物群落通过选择对亚硝酸盐还原酶具有金属抗性的形式来适应高水平的铅。

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