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Modulation of Metabolism and Switching to Biofilm Prevail over Exopolysaccharide Production in the Response of Rhizobium alamii to Cadmium

机译:代谢的调节和切换到生物膜占主导地位的外多糖生产对铝的根瘤菌对镉的反应。

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摘要

Heavy metals such as cadmium (Cd2+) affect microbial metabolic processes. Consequently, bacteria adapt by adjusting their cellular machinery. We have investigated the dose-dependent growth effects of Cd2+ on Rhizobium alamii, an exopolysaccharide (EPS)-producing bacterium that forms a biofilm on plant roots. Adsorption isotherms show that the EPS of R. alamii binds cadmium in competition with calcium. A metabonomics approach based on ion cyclotron resonance Fourier transform mass spectrometry has showed that cadmium alters mainly the bacterial metabolism in pathways implying sugars, purine, phosphate, calcium signalling and cell respiration. We determined the influence of EPS on the bacterium response to cadmium, using a mutant of R. alamii impaired in EPS production (MSΔGT). Cadmium dose-dependent effects on the bacterial growth were not significantly different between the R. alamii wild type (wt) and MSΔGT strains. Although cadmium did not modify the quantity of EPS isolated from R. alamii, it triggered the formation of biofilm vs planktonic cells, both by R. alamii wt and by MSΔGT. Thus, it appears that cadmium toxicity could be managed by switching to a biofilm way of life, rather than producing EPS. We conclude that modulations of the bacterial metabolism and switching to biofilms prevails in the adaptation of R. alamii to cadmium. These results are original with regard to the conventional role attributed to EPS in a biofilm matrix, and the bacterial response to cadmium.
机译:镉(Cd 2 + )等重金属会影响微生物的代谢过程。因此,细菌通过调节其细胞机械来适应。我们已经研究了Cd 2 + 对根瘤菌(一种根瘤菌)的剂量依赖性生长效应,该根瘤菌是一种在植物根部形成生物膜的胞外多糖(EPS)产生细菌。吸附等温线表明,阿拉美罗非鱼的EPS与镉竞争结合镉。基于离子回旋共振傅里叶变换质谱的代谢组学方法表明,镉主要通过糖,嘌呤,磷酸盐,钙信号传导和细胞呼吸的途径改变细菌的代谢。我们确定了EPS对细菌对镉的响应的影响,使用了在EPS生产中受损的拟南芥突变体(MSΔGT)。镉对细菌生长的剂量依赖性效应在阿拉美罗非鱼野生型(wt)和MSΔGT菌株之间没有显着差异。尽管镉并没有改变从阿拉米罗非鱼中分离出的EPS的数量,但它还是通过阿拉米罗非鱼wt和MSΔGT触发了生物膜和浮游细胞的形成。因此,似乎可以通过改用生物膜生活方式而不是产生EPS来控制镉的毒性。我们得出的结论是,细菌代谢的调节和向生物膜的转换在拟南芥对镉的适应中占主导地位。这些结果是关于生物膜基质中EPS的常规作用以及细菌对镉的反应的原始结果。

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