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Adaptive and cross-protective responses against cadmium and zinc toxicity in cadmium-resistant bacterium isolated from a zinc mine

机译:从锌矿中分离出来的抗镉细菌对镉和锌毒性的适应性和交叉保护性反应

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摘要

Cadmium (Cd) is a major environmental hazard, which usually is detected in its ionic form of Cd2+. It also causes adverse toxic effects on human health and other living organisms. Cd-resistant bacteria were isolated from Cd-contaminated soils. One isolate, TAK1, was highly resistance level to Cd toxicity. TAK1 was isolated from soil contaminated with a high Cd concentration (204.1 mg.kg-1). The result of 16S rDNA sequence analysis found that the TAK1 showed the similarity to Ralstonia sp. Physiological adaptive and cross-protective responses to Cd and Zn killing were investigated in Ralstonia sp.TAK1. Exposure to a low concentration of Cd induced adaptive resistance to higher concentrations of Cd. In addition, pretreatment of Ralstonia sp.TAK1 with an inducing concentration of Cd conferred cross-protective response against subsequent exposure to the lethal concentrations of Zn. The induced adaptive and cross-protective response Ralstonia sp.TAK1 required newly synthesized protein(s). Cd-induced adaptive and cross-protective responses against Cd and Zn toxicity are the important mechanisms used by Ralstonia sp.TAK1 to survive in the heavy metal-contaminated environments. These findings might lead to the use of Ralstonia sp.TAK1 for microbial based remediation in Cd and Zn-contaminated soils.
机译:镉是一种主要的环境危害,通常以离子形式的Cd 2 + 检出。它还对人体健康和其他生物造成不利的毒性影响。从受Cd污染的土壤中分离出抗Cd细菌。一种分离物TAK1对Cd毒性具有高度抗性。从高Cd浓度(204.1 mg.kg -1 )污染的土壤中分离出TAK1。 16S rDNA序列分析的结果发现TAK1与Ralstonia sp。相似。在Ralstonia sp.TAK1中研究了对Cd和Zn杀灭的生理适应性和交叉保护性反应。暴露于低浓度的Cd会诱导对更高浓度的Cd的适应性抗性。此外,用诱导浓度的Cd预处理Ralstonia sp.TAK1可赋予交叉保护作用,以防止随后暴露于致死浓度的Zn中。诱导的适应性和交叉保护反应Ralstonia sp.TAK1需要新合成的蛋白质。 Cd诱导的针对Cd和Zn毒性的适应性和交叉保护反应是Ralstonia sp.TAK1在重金属污染环境中生存的重要机制。这些发现可能导致将Ralstonia sp.TAK1用于在受Cd和Zn污染的土壤中进行微生物修复。

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