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Impact of heavy metals on inhibitory concentration of Escherichia coli-a case study of river Yamuna system, Delhi, India

机译:重金属对大肠杆菌抑制浓度的影响-以印度德里的亚穆纳河系统为例

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The occurrence of resistant bacteria to specific heavy metals can be associated with increasing load of the metals in the environment. River Yamuna is polluted by various toxic heavy metals discharged by several industrial and agricultural sources. Therefore, the use of heavy metal-resistant bacteria as an indicator of metal pollution was tested in the present study. For the purpose of the study, the heavy metal resistance status of 42 Escherichia coli strains isolated from River Yamuna water from 7 sampling sites within a span of 2years was determined using growth curves and plate dilution method in terms of minimum inhibitory concentration (MIC) values by comparing with MIC value of control strain. Seasonally, the lowest mean MIC value was observed for bacterial strains isolated in post-monsoon (December) 2013 and highest mean MIC value was observed for bacterial strains isolated in monsoon (August) 2015. Site-wise analysis of the maximum mean MIC values for all the isolated strains showed the highest mean Ni MIC value for the bacterial strains isolated from site S4 (ITO), highest mean Cu MIC, Cr MIC, and Fe MIC values for the bacterial strains isolated from site S2 (Najafgarh drain intermixing zone) and highest mean Cd MIC, Pb MIC, and Zn MIC values for the bacterial strains isolated from site S7 (Shahdara drain intermixing zone). Correlation analysis between mean MIC site-wise results with mean heavy metal site-wise concentrations showed significant positive correlation indicating that the higher the mean concentration of a given heavy metal at a given site, the higher the mean MIC value for the strains isolated from the same site indicating higher level of resistance. Overall, the present study has shown that the presence of heavy metals in River Yamuna caused due to indiscriminate discharge of various effluents from different kind of sources as well as due to insufficient treatment capacity of sewage treatment plants as well as common effluent treatment plants, has serious impacts on its bacterial microflora as it leads to the development of resistant strains.
机译:对特定重金属的抗性细菌的出现可能与环境中金属的负荷增加有关。亚穆纳河被多种工业和农业资源排放的各种有毒重金属污染。因此,在本研究中测试了使用抗重金属细菌作为金属污染的指标。为了研究的目的,使用生长曲线和平板稀释法,根据最小抑菌浓度(MIC)值,确定了两年内从7个采样点的Yamuna河水分离出的42株大肠杆菌的重金属抗性状态。通过与控制应变的MIC值进行比较。在季节性上,2013年季风后(12月)分离出的细菌菌株的最低MIC平均值最低,2015年八月(2015年8月)分离出的菌株的最高MIC平均值。现场分析了MIC的最大平均MIC值。所有分离出的菌株均显示出从S4(ITO)站点分离出的细菌菌株的最高Ni MIC平均值,从S2(Najafgarh排水混合区)分离出的细菌菌株的Cu MIC,Cr MIC和Fe MIC均值最高。从站点S7(Shahdara排水混合区)分离出的细菌菌株的最高Cd MIC,Pb MIC和Zn MIC平均值。平均MIC定点结果与平均重金属定点浓度之间的相关性分析显示出显着的正相关性,表明给定位置上给定重金属的平均浓度越高,从重金属分离得到的菌株的平均MIC值越高。同一部位表明抗药性较高。总体而言,本研究表明,亚姆纳河中重金属的存在是由于不分种类地排放各种来源的各种废水,以及污水处理厂和普通污水处理厂的处理能力不足所致。由于其导致了抗药性菌株的发展,对其细菌菌群产生了严重影响。

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