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Insights in the regulation of the degradation of PAHs in Novosphingobium sp. HRla and utilization of this regulatory system as a tool for the detection of PAHs

机译:新孢子菌属物种中PAHs降解调控的见解。 HRla以及将此监管系统用作检测PAH的工具

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摘要

Novosphingobium sp. HRla is able to grow using diverse polycyclic aromatic hydrocarbons (PAHs) as the sole carbon sources. We have identified two transposons that contain genes encoding several ring-hydroxylating dioxygenases and we have demonstrated the crucial role of one of these dioxygenases in the PAH metabolism in this strain; a mutant in the large subunit of this dioxygenase was unable to growth with 2-, 3-, or 4-rings aromatic hydrocarbons, Using a construction of lacZ gene fused with the pathway promoter, we determined that the expression of the dioxygenase gene was specifically induced in the presence of some PAHs and intermediates of their metabolic pathway. In silico analysis of the ORFs within the transposons and construction of the corresponding knock-out mutants allowed us to identify the main regulatory protein involved in PAH degradation in Novosphingobium sp. HR1 a. To our knowledge this is the first time that a regulatory protein controlling the degradation pathway of high-molecular weight PAHs has been investigated. A deeper knowledge of the regulatory circuits that control the expression of PAH degradation has allowed us to design two biosensors for monitoring environments contaminated with oil-derived mixtures. Novosphingobium sp. HRla (pKSR-1 ), the biosensor based on the promoter of the regulatory protein PahR, was more sensitive and faster in the detection of aromatic contaminants in environmental samples than Novosphingobium sp. HRla (pKSA-1 ), the biosensor that is based on the PAHs-dioxygenase promoter (P_(pahA)). Novosphingobium sp. HRla (pKSR-1) was able to detect PAHs in the range of µg l~(-1) (ppb).
机译:新孢子虫HRla能够使用多种多环芳烃(PAHs)作为唯一碳源进行生长。我们已经鉴定出两个转座子,它们包含编码几种环羟基化双加氧酶的基因,并且我们已经证明了其中一种双加氧酶在该菌株的PAH代谢中的关键作用。该双加氧酶大亚基中的一个突变体无法与2、3或4环芳烃一起生长。使用与途径启动子融合的lacZ基因构建,我们确定了该双加氧酶基因的表达是特异性的。在某些PAHs及其代谢途径的中间体存在下被诱导。在转座子内的ORF的计算机分析以及相应敲除突变体的构建中,我们得以鉴定了新孢子菌属物种中PAH降解所涉及的主要调控蛋白。 HR1 a。据我们所知,这是首次研究了控制高分子量PAHs降解途径的调节蛋白。对控制PAH降解表达的调节电路的深入了解,使我们能够设计出两种生物传感器,用于监测被石油衍生的混合物污染的环境。新孢子虫HRla(pKSR-1)是一种基于调节蛋白PahR启动子的生物传感器,在检测环境样品中的芳香族污染物方面比Novosphingobium sp更灵敏,更快速。 HRla(pKSA-1),基于PAHs双加氧酶启动子(P_(pahA))的生物传感器。新孢子虫HRla(pKSR-1)能够检测到微克l〜(-1)(ppb)范围内的多环芳烃。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|381-393|共13页
  • 作者单位

    Environmental Protection Department, Estación Experimental del Zaidin, Consejo Superior de Investigaaones Oentificas, C/Profesor Albareda 1,18008, Spain;

    Environmental Protection Department, Estación Experimental del Zaidin, Consejo Superior de Investigaaones Oentificas, C/Profesor Albareda 1,18008, Spain;

    Environmental Protection Department, Estación Experimental del Zaidin, Consejo Superior de Investigaaones Oentificas, C/Profesor Albareda 1,18008, Spain;

    Environmental Protection Department, Estación Experimental del Zaidin, Consejo Superior de Investigaaones Oentificas, C/Profesor Albareda 1,18008, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Novosphingobium; PAH degradation; PAH biosensors; Diesel-contaminated waters;

    机译:新孢子虫;PAH降解;PAH生物传感器;柴油污染的水;

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