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非均匀电场对土壤中基因工程菌的迁移与机理
引用本文:罗启仕,张锡辉,王慧,钱易.非均匀电场对土壤中基因工程菌的迁移与机理[J].中国环境科学,2004,24(3):0-0.
作者姓名:罗启仕  张锡辉  王慧  钱易
作者单位:1. 清华大学环境科学与工程系,环境模拟与污染控制国家重点联合实验室,北京100084
2. 清华大学环境科学与工程系,环境模拟与污染控制国家重点联合实验室,北京100084;清华大学深圳研究生院,环境工程与管理研究中心,广东,深圳,518057
基金项目:日本地球环境产业机构资助项目
摘    要: 以克隆有绿色荧光蛋白基因的Rm1021-GFP细菌作为标记细菌,研究了该细菌在非均匀电场作用下在土壤中的运移特征和存活性,分析了其运移机理和影响因素.结果表明,非均匀电场能有效地促进土壤中Rm1021-GFP细菌的运移,电泳、介电泳和随电渗析流迁移是其主要机理,土壤介质、电压梯度和电极反应是其主要影响因素,电极反应对电极附近细菌的存活性有不利影响.

关 键 词:非均匀电场  基因工程菌  细菌迁移  细菌存活性
文章编号:1000-6923(2004)03-0285-05
收稿时间:1900-01-01;
修稿时间:2003年10月8日

The movement and its mechanism of genetic engineering bacteria in soils by non-uniform electric field
LUO Qi-shi,ZHANG Xi-hui,WANG Hui,QIAN Yi.The movement and its mechanism of genetic engineering bacteria in soils by non-uniform electric field[J].China Environmental Science,2004,24(3):0-0.
Authors:LUO Qi-shi  ZHANG Xi-hui    WANG Hui  QIAN Yi
Institution:LUO Qi-shi1,ZHANG Xi-hui1,2,WANG Hui1,QIAN Yi1
Abstract:With Rm1021-GFP bacteria of green fluorescent protein gene as a mark bacterium, the movement character and survival of the bacteria in soil under non-uniform electric field were studied, and the movement mechanisms and affecting factors were analyzed. Non-uniform electric field could promote effectively the movement of the bacteria in soil. Electrophoresis, dielectrophoresis and electroosmosis were its main mechanism; and soil media, voltage gradient and electrolysis of pore fluids on electrodes were its main affecting factors. Electrolysis of pore fluids on electrodes affected adversely the survival of the bacteria near the electrodes.
Keywords:non-uniform electric field  genetic engineering bacteria  bacteria movement  bacteria survival
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