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首页> 外文期刊>Canadian journal of microbiology >Effects of remediation on the bacterial community of an acid mine drainage impacted stream
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Effects of remediation on the bacterial community of an acid mine drainage impacted stream

机译:修复对酸性矿山排水影响河道细菌群落的影响

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Acid mine drainage (AMD) represents a global threat to water resources, and as such, remediation of AMDimpacted streams is a common practice. During this study, we examined bacterial community structure and environmental conditions in a low-order AMD-impacted stream before, during, and after remediation. Bacterial community structure was examined via polymerase chain reaction amplification of 16S rRNA genes followed by denaturing gradient gel electrophoresis. Also, bacterial abundance and physicochemical data (including metal concentrations) were collected and relationships to bacterial community structure were determined using BIO-ENV analysis. Remediation of the study stream altered environmental conditions, including pH and concentrations of some metals, and consequently, the bacterial community changed. However, remediation did not necessarily restore the stream to conditions found in the unimpacted reference stream; for example, bacterial abundances and concentrations of some elements, such as sulfur, magnesium, and manganese, were different in the remediated stream than in the reference stream. BIO-ENV analysis revealed that changes in pH and iron concentration, associated with remediation, primarily explained temporal alterations in bacterial community structure. Although the sites sampled in the remediated stream were in relatively close proximity to each other, spatial variation in community composition suggests that differences in local environmental conditions may have large impacts on the microbial assemblage.
机译:酸性矿山排水(AMD)代表着对水资源的全球威胁,因此,对AMD影响的河流进行整治是一种普遍做法。在这项研究中,我们研究了在修复之前,期间和之后,在低级AMD污染的溪流中检查细菌群落结构和环境条件。通过16S rRNA基因的聚合酶链反应扩增,然后变性梯度凝胶电泳,检查细菌群落结构。此外,收集细菌丰度和理化数据(包括金属浓度),并使用BIO-ENV分析确定与细菌群落结构的关系。研究流的修复改变了环境条件,包括pH和某些金属的浓度,因此细菌群落发生了变化。但是,修复并不一定将流恢复到未受影响的参考流中找到的条件;例如,修复流中的细菌丰度和某些元素(例如硫,镁和锰)的浓度与参考流中的不同。 BIO-ENV分析表明,与修复相关的pH和铁浓度的变化主要解释了细菌群落结构的时间变化。尽管在修复流中采样的位点彼此相对接近,但是群落组成的空间变化表明,局部环境条件的差异可能会对微生物的组合产生很大的影响。

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