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南古吉拉特邦普通污水处理厂中的功能微生物多样性动态与碳氢化合物降解

Functional microbial diversity dynamics in common effluent treatment plants of South Gujarat and hydrocarbon degradation.

作者信息

Zaveri Purvi, Munshi Nasreen, Vaidya Alok, Jha Sanjay, Kumar G Naresh

机构信息

Institute of Science, Nirma University, Sarkhej - Gandhinagar Highway, Ahmedabad, 382 481 Gujarat, India.

出版信息

Can J Microbiol. 2015 Jun;61(6):389-97. doi: 10.1139/cjm-2014-0700. Epub 2015 Mar 23.

Abstract

Common effluent treatment plants (CETPs) of South Gujarat region, India, process wastewater generated by more than 2500 industries because of the nonfeasibility of processing at the individual industrial unit. This study assessed functional microbial diversity in wastewater samples of CETPs over a geological belt using Ecoplate®, isolation of the most abundant bacteria, and screening for hydrocarbon degradation. The high evenness (EPielou) values (0.9) in almost all samples indicated a highly even community structure. Principal component analysis of carbon source utilization showed a cluster of all inlet samples except E1 and another cluster of all outlet samples; aeration tank community samples were dispersed. In spite of the high richness found in microbial communities, 60 morphologically similar organisms were observed and isolated; 46 out of them were subjected to amplified ribosomal DNA restriction analysis with MboI, HaeIII, and TaqI enzyme, followed by UPGMA clustering. In screening the most abundant bacteria from each cluster, one of the cultures showed a high potential for hydrocarbon degradation and was identified as Pseudomonas citronellolis by 16S rDNA sequencing. Because of its highly adapted inherent nature, this bacterium may help augment the conventional procedure in wastewater treatment and efficiently decrease the organic load.

摘要

印度古吉拉特邦南部地区的公共污水处理厂(CETPs)处理着2500多家工业企业产生的废水,因为在单个工业单位进行处理并不可行。本研究使用Ecoplate®评估了沿地质带的CETPs废水样本中的功能微生物多样性,分离了最丰富的细菌,并筛选了碳氢化合物降解情况。几乎所有样本中较高的均匀度(E皮尔逊均匀度)值(0.9)表明群落结构高度均匀。碳源利用的主成分分析显示,除E1外的所有进水样本聚为一组,所有出水样本聚为另一组;曝气池群落样本则分散分布。尽管微生物群落具有较高的丰富度,但仍观察并分离出60种形态相似的生物体;其中46种用MboI、HaeIII和TaqI酶进行了扩增核糖体DNA限制性分析,随后进行了UPGMA聚类。在从每个聚类中筛选最丰富的细菌时,其中一种培养物显示出较高的碳氢化合物降解潜力,并通过16S rDNA测序鉴定为香茅假单胞菌。由于其高度适应的固有特性,这种细菌可能有助于改进废水处理的传统方法,并有效降低有机负荷。

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