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Copper chloride induces antioxidant gene expression but reduces ability to mediate H2O2 toxicity in Xanthomonas campestris

机译:氯化铜诱导抗氧化基因表达,但降低了在Xanthomonas Campestris中介导H2O2毒性的能力

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Copper (Cu)-based biocides are currently used as control measures for both fungal and bacterial diseases in agricultural fields. In this communication, we show that exposure of the bacterial plant pathogen Xanthomonas campestris to nonlethal concentrations of Cu2+ ions (75 μM) enhanced expression of genes in OxyR, OhrR and IscR regulons. High levels of catalase, Ohr peroxidase and superoxide dismutase diminished Cu2+-induced gene expression, suggesting that the production of hydrogen peroxide (H2O2) and organic hydroperoxides is responsible for Cu2+-induced gene expression. Despite high expression of antioxidant genes, the CuCl2-treated cells were more susceptible to H2O2 killing treatment than the uninduced cells. This phenotype arose from lowered catalase activity in the CuCl2-pretreated cells. Thus, exposure to a nonlethal dose of Cu2+ renders X. campestris vulnerable to H2O2, even when various genes for peroxide-metabolizing enzymes are highly expressed. Moreover, CuCl2-pretreated cells are sensitive to treatment with the redox cycling drug, menadione. No physiological cross-protection response was observed in CuCl2-treated cells in a subsequent challenge with killing concentrations of an organic hydroperoxide. As H2O2 production is an important initial plant immune response, defects in H2O2 protection are likely to reduce bacterial survival in plant hosts and enhance the usefulness of copper biocides in controlling bacterial pathogens.
机译:基于铜(Cu)的杀菌剂目前用作农业田地真菌和细菌疾病的控制措施。在这种通信中,我们展示了细菌植物病原体Xanthomonas Chamestris的暴露于非致力的Cu2 +离子(75μm)的Cu2 +离子(75μm)的增强基因表达的基因表达,Ohrr和ISCR调节件。高水平的过氧化氢酶,OHR过氧化物酶和超氧化物歧化酶减少了Cu2 +-诱导的基因表达,表明过氧化氢(H2O2)和有机氢过氧化物的产生是Cu2 +-诱导的基因表达的原因。尽管抗氧化基因的高表达,CuCl2处理的细胞比未解释的细胞更容易受到H 2 O 2杀伤处理的影响。该表型从CuCl 2 - 预处理细胞中降低了过氧化氢酶活性。因此,即使在高氧化物代谢酶的各种基因被高度表达时,暴露于易受H 2 O 2的CheStris的非致畸剂量的Cu2 + renders X. Campestris。此外,CuCl2-预处理的细胞对用氧化还原循环药物,男女革氏植物治疗敏感。在随后的CuCl2处理细胞中没有在随后的攻击中观察到生理交叉保护反应,杀灭有机氢过氧化物浓度。随着H 2 O 2的产量是重要的初始植物免疫应答,H2O2保护中的缺陷可能会降低植物宿主中的细菌存活,并增强铜杀菌剂在控制细菌病原体中的有用性。

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