首页> 外文期刊>International microbiology: the official journal of the Spanish Society for Microbiology >Essential role of the czc determinant for cadmium, cobalt and zinc resistance in Gluconacetobacter diazotrophicus PAl 5
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Essential role of the czc determinant for cadmium, cobalt and zinc resistance in Gluconacetobacter diazotrophicus PAl 5

机译:czc决定因素在重氮糖杆菌PAl 5中对镉,钴和锌抗性的重要作用

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摘要

The mechanisms of cadmium, cobalt and zinc resistance were characterized in the plant-growth-promoting bacterium Gluconacetobacter diazotrophicus PAl 5. The resistance level of the wild-type strain was evaluated through the establishment of minimum inhibitory concentrations (MIC) of the soluble compounds CdCl2·H2O, CoCl2·6H2O and ZnCl2. Gluconacetobacter diazotrophicus PAl 5 was resistant to high concentrations of Cd, Co and Zn, with MICs of 1.2, 20 and 20 mM, respectively. Screening of an insertion library from transposon EZ-Tn5 in the presence of ZnO revealed that the mutant GDP30H3 was unable to grow in the presence of the compound. This mutant was also highly sensitive to CdCl2·H2O, CoCl2·6H2O and ZnCl2. Molecular characterization established that the mutation affected the czcA gene, which encodes a protein involved in metal efflux. In silico analysis showed that czcA is a component of the czcCBARS operon together with four other genes. This work provides evidence of the high tolerance of G. diazotrophicus PAl 5 to heavy metals and that czc is a determinant for metal resistance in this bacterium.
机译:在促进植物生长的细菌重氮营养菌PAl 5中表征了对镉,钴和锌的抗性机理。通过建立可溶性化合物CdCl2的最低抑制浓度(MIC)来评估野生型菌株的抗性水平。 ·H2O,CoCl2·6H2O和ZnCl2。重氮糖杆菌属PAl 5对高浓度的Cd,Co和Zn具有抗性,MIC分别为1.2、20和20 mM。在存在ZnO的情况下从转座子EZ-Tn5 中筛选插入文库表明,突变体GDP30H3在该化合物存在下无法生长。该突变体对CdCl2·H2O,CoCl2·6H2O和ZnCl2也高度敏感。分子表征确定该突变影响了czcA基因,该基因编码参与金属外排的蛋白质。电脑分析表明,czcA与其他四个基因一起是czcCBARS操纵子的组成部分。这项工作提供了重氮梭菌PAl 5对重金属的高度耐受性的证据,而czc是该细菌对金属抗性的决定因素。

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