首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Metal tolerance assisted antibiotic susceptibility profiling in Comamonas acidovorans
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Metal tolerance assisted antibiotic susceptibility profiling in Comamonas acidovorans

机译:金属耐受辅助抗生素敏感性曲线在康米诺拉酸妇虫

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摘要

Metal ions are known selective agents for antibiotic resistance and frequently accumulate in natural environments due to the anthropogenic activities. However, the action of metals that cause the antibiotic resistance is not known for all bacteria. The present work is aimed to investigate the co-selection of metals and antibiotic resistance in Comamonas acidovorans. Tolerance profile of 16 metals revealed that the strain could tolerate high concentrations of toxic metals i.e., Cr (710 ppm), As (380 ppm), Cd (320 ppm), Pb (305 ppm) and Hg (205 ppm). Additionally, metal tolerant phenotypes were subjected to antibiotic resistance profiling; wherein several metal tolerant phenotypes (Cr 1.35-fold; Co-1.33 fold; Mn-1.29 fold) were resistant, while other metal tolerant phenotypes (Mg 1.32-fold; Hg 1.29-fold; Cu 1.28-fold) were susceptible than control phenotype. Metal accumulation may alter the metabolism of C. acidovorans that activates or inactivates the genes responsible for antibiotic resistance, resulting in the resistance and/or susceptibility pattern observed in metal resistant phenotypes.
机译:金属离子是已知的选择剂,用于抗生素耐药性,并且由于人为的活动,通常在天然环境中积聚。然而,导致抗生素抗性的金属的作用对于所有细菌都不知道。目前的作品旨在调查酸酸甲酸甲中的金属和抗生素抗性的共选。 16金属的耐受性曲线显示,该菌株可以耐受高浓度的毒性金属I.,Cr(710ppm),As(380ppm),Cd(320ppm),Pb(305ppm)和Hg(205ppm)。另外,对金属耐受表型进行抗生素抗性分析;其中几种金属耐受表型(Cr 1.35倍; CO-1.​​33倍; Mn-1.29折叠)是抗性的,而其他金属耐受表型(Mg 1.32倍; Hg 1.29倍; Cu 1.28倍)易感于控制表型。金属积聚可以改变C.酸Ovorans的代谢,其激活或灭活负责抗生素耐药性的基因,导致在金属抗性表型中观察到的电阻和/或易感性模式。

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