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首页> 外文期刊>BMC Microbiology >Cupriavidus pinatubonensis AEO106 deals with copper-induced oxidative stress before engaging in biodegradation of the herbicide 4-chloro-2-methylphenoxyacetic acid
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Cupriavidus pinatubonensis AEO106 deals with copper-induced oxidative stress before engaging in biodegradation of the herbicide 4-chloro-2-methylphenoxyacetic acid

机译:Pinriatubonensis铜杯AEO106在参与除草剂4-氯-2-甲基苯氧基乙酸的生物降解之前先处理铜诱导的氧化胁迫。

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Microbial degradation of phenoxy acid (PA) herbicides in agricultural soils is important to minimize herbicide leaching to groundwater reservoirs. Degradation may, however, be hampered by exposure of the degrader bacteria to toxic metals as copper (Cu) in the soil environment. Exposure to Cu leads to accumulation of intracellular reactive oxygen species (ROS) in some bacteria, but it is not known how Cu-derived ROS and an ensuing oxidative stress affect the degradation of PA herbicides. Based on the previously proposed paradigm that bacteria deal with environmental stress before they engage in biodegradation, we studied how the degradation of the PA herbicide 2-methyl-4-chlorophenoxyacetic acid (MCPA) by the model PA degrader Cupriavidus pinatubonensis AEO106 was affected by Cu exposure. Exposure of C. pinatubonensis in batch culture to sublethal concentrations of Cu increased accumulation of ROS measured by the oxidant sensing probe 2,7-dichlorodihydrofluorescein diacetate and flow cytometry, and resulted in upregulation of a gene encoding a protein belong to the Ohr/OsmC protein family. The ohr/osmC gene was also highly induced by H2O2 exposure suggesting that it is involved in the oxidative stress response in C. pinatubonensis. The increased ROS accumulation and increased expression of the oxidative stress defense coincided with a delay in the catabolic performance, since both expression of the catabolic tfdA gene and MCPA mineralization were delayed compared to unexposed control cells. The current study suggests that Cu-induced ROS accumulation in C. pinatubonensis activates a stress response involving the product of the ohr/osmC gene. Further, the stress response is launched before induction of the catabolic tfdA gene and mineralization occurs.
机译:农业土壤中苯氧酸(PA)除草剂的微生物降解对于最大程度地减少除草剂向地下水蓄水池的浸出至关重要。但是,降解菌可能会因土壤环境中降解细菌与铜(Cu)等有毒金属的接触而受到阻碍。暴露于Cu会导致某些细菌中细胞内活性氧(ROS)的积累,但尚不知道Cu衍生的ROS和随之产生的氧化应激如何影响PA除草剂的降解。基于先前提出的范例,即细菌在进行生物降解之前先处理环境压力,我们研究了模型PA降解剂Cupriavidus pinatubonensis AEO106对PA除草剂2-甲基-4-氯苯氧基乙酸(MCPA)的降解如何受到铜的影响接触。分批培养中的Pinatubonensis暴露于亚致死浓度的Cu会增加氧化剂感测探针2,7-二氯二氢荧光素和流式细胞仪检测到的ROS积累,并导致编码Ohr / OsmC蛋白蛋白的基因上调家庭。 Ohr / osmC基因也受到H2O2暴露的高度诱导,表明它参与了Pinatubonensis的氧化应激反应。由于与未暴露的对照细胞相比,分解代谢的tfdA基因的表达和MCPA矿化都被延迟,因此ROS积累的增加和氧化应激防御的表达的增加与分解代谢的表现相吻合。当前的研究表明,铜诱导的松果油菜中的ROS积累激活了涉及ohr / osmC基因产物的应激反应。此外,在诱导分解代谢的tfdA基因和矿化发生之前启动了应激反应。

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