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首页> 外文期刊>Ecotoxicology >Genetically modified microorganism Spingomonas paucimobilis UT26 for simultaneously degradation of methyl-parathion and γ-hexachlorocyclohexane
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Genetically modified microorganism Spingomonas paucimobilis UT26 for simultaneously degradation of methyl-parathion and γ-hexachlorocyclohexane

机译:转基因微生物小孢子单胞菌UT26可同时降解甲基对硫磷和γ-六氯环己烷

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摘要

Bioremediation of pesticide residues by bacteria is an efficient and environmentally friendly method to deal with environmental pollution. In this study, a genetically modified microorganism (GMM) named UT26XEGM was constructed by introducing a parathion hydrolase gene into an initially γ-hexachlorocyclohexane (γ-HCH) degrading bacterium Spingomonas paucimobilis UT26. In order to reduce its potential risk of gene escaping into the environment for the public concern on biosafety, a suicide system was also designed that did not interfere with the performance of the GMM until its physiological function was activated by specific signal. The system was designed with circuiting suicide cassettes consisting of killing genes gef and ecoRIR from Escherichia coli controlled by Pm promoter and the xylS gene. The cell viability and original degradation characteristics were not affected by the insertion of exogenous genes. The novel GMM was capable of degrading methyl-parathion and γ-HCH simultaneously. In laboratory scale testing, the recombinant bacteria were successfully applied to the bioremediation of mixed pesticide residues with the activity of self-destruction after 3-methylbenzoate induction.
机译:通过细菌对农药残留物进行生物修复是一种处理环境污染的有效且环保的方法。在这项研究中,通过将对硫磷水解酶基因引入最初降解γ-六氯环己烷(γ-HCH)的细菌变形单胞菌UT26中,构建了名为UT26XEGM的转基因微生物(GMM)。为了降低其基因逃逸到环境中以引起公众对生物安全的关注的潜在风险,还设计了一种自杀系统,该系统在被特定信号激活其生理功能之前不会干扰GMM的性能。该系统设计了带有自杀盒的电路,该自杀盒包括由Pm启动子和xylS基因控制的来自大肠杆菌的杀死基因gef和ecoRIR。细胞活力和原始降解特性不受外源基因插入的影响。新型GMM能够同时降解甲基对硫磷和γ-六氯环己烷。在实验室规模的测试中,重组细菌已成功地用于生物修复混合农药残留物,并具有3-甲基苯甲酸酯诱导后自毁的活性。

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