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利用粘质沙雷氏菌进行有毒金属生物吸附(去除)。

Possible use of Serratia marcescens in toxic metal biosorption (removal).

机构信息

Department Farmaco-Biologico, Faculty of Pharmacy, University of Messina, Messina, Italy.

出版信息

Environ Sci Pollut Res Int. 2012 Jan;19(1):161-8. doi: 10.1007/s11356-011-0539-8. Epub 2011 Jun 24.

Abstract

BACKGROUND, AIM AND SCOPE: Metal pollution is a serious problem for environmental safety and programmes of monitoring and bioremediation are needed. Among the processes of bioremediation, the use of microbes to remove and degrade contaminants is considered a biotechnological approach to clean up polluted environments.

AIM

The aim of this study was to evaluate the ability of Serratia marcescens in Pb, Cd and Cr removal and the potential use of these bacteria in toxic metal bioremediation from polluted environments.

METHODS

A short-term study (120 min) was carried out to study the bacterial growth in the presence of sub-inhibitory concentrations of each metal analysed and the kinetics of metal biosorption in S. marcescens strain. In addition, metal influence on the biosynthesis of the red pigment 'prodigiosina' by S. marcescens was monitored.

RESULTS

The results obtained in this study show metals biosorption by S. marcescens (range: 0.0133-0.213 μg/g for Pb; 0.097-0.1853 μg/g for Cd; and 0.105-0.176 μg/g for Cr) and confirm the possible use of this bacterium to realize bioremediation processes, especially for Pb removal, and as a bioindicator of metal pollution.

摘要

背景、目的和范围:金属污染对环境安全是一个严重的问题,因此需要进行监测和生物修复计划。在生物修复过程中,利用微生物去除和降解污染物被认为是一种生物技术方法,可以用于清理污染环境。

目的

本研究旨在评估粘质沙雷氏菌在去除 Pb、Cd 和 Cr 方面的能力,并评估这些细菌在有毒金属生物修复方面的潜在用途,以修复污染环境。

方法

进行了一项短期研究(120 分钟),以研究在每种金属的亚抑制浓度存在下细菌的生长情况,以及 S. marcescens 菌株对金属生物吸附的动力学。此外,还监测了金属对粘质沙雷氏菌生物合成红色色素“灵菌红素”的影响。

结果

本研究结果表明,S. marcescens 对 Pb(范围:0.0133-0.213 μg/g)、Cd(0.097-0.1853 μg/g)和 Cr(0.105-0.176 μg/g)进行了生物吸附,并证实了该细菌可能用于实现生物修复过程,特别是去除 Pb,以及作为金属污染的生物指示剂。

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