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Application of bacterial biomass as a potential metal indicator.

机译:应用细菌生物质作为潜在的金属指示剂。

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Bioindicators are biological systems which can be used to indicate the presence of certain elements. The basis of indication are the changes that occur either in their metabolism or in phenotype of the organisms due to the uptake and accumulation of these elements. The threat of environmental pollution due to enhanced availability of both essential and toxic metals is a matter of great concern. Application of any remedial measure requires proper assessment of the contaminated sample. We used a multimetal-resistant organism, Pseudomonas stutzeri RS34, to indicate the presence of Cu2+ and Co2+ in solution as well as in an industrial effluent. Metal resistance mechanism in this organism is based on biosorption and strain RS34 showed preferential adsorption for Cu2+. This accumulation imparted green colour to the biomass in a concentration-dependent manner (2.0 ppm and higher concentration). The colour is seen even in bimetal or multimetal conditions, where Co2+, Zn2+ and Mn2+ were present along with Cu2+ and is also observed in an effluent. Co2+ could also be detected by the biomass acquiring a characteristic pink colour. We thus propose that strain RS34 can be employed as bioindicator of certain metals simply based on appearance of colour. This method is not only economical, but also quick and easy to operate..
机译:生物指示剂是可用于指示某些元素的存在的生物系统。适应症的基础是由于这些元素的吸收和积累而在生物的代谢或表型方面发生的变化。人们越来越关注基本金属和有毒金属的可用性所带来的环境污染威胁。采取任何补救措施都需要对受污染的样品进行适当的评估。我们使用了一种多金属抗性生物,即斯氏假单胞菌RS34,来表明溶液和工业废水中存在Cu2 +和Co2 +。该生物中的金属抗性机理是基于生物吸附,菌株RS34显示出对Cu2 +的优先吸附。该积累以浓度依赖的方式(2.0ppm和更高的浓度)赋予生物质绿色。即使在双金属或多金属条件下也可以看到颜色,其中Co2 +,Zn2 +和Mn2 +与Cu2 +一起存在,并且在废水中也可以观察到。 Co2 +也可以通过生物质获得特征性的粉红色来检测。因此,我们提出仅基于颜色的外观就可以将菌株RS34用作某些金属的生物指示剂。这种方法不仅经济,而且操作简便。

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