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Mathematical Modelling of Toxic Metal Uptake and Efflux Pump in Metal-Resistant Bacterium Bacillus cereus Isolated From Heavy Crude Oil

机译:重油分离的耐金属细菌蜡样芽胞杆菌中有毒金属吸收和外排泵的数学模型

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The aim of this study was to describe the mechanisms that native Bacillus cereus M6 isolated from heavy crude oil (o)API gravity 11.5 uses to tolerate and/or resist toxic metals. Metal tolerance and removal of Pb(II), Cr(VI), and As(V) was determined. In addition, we evidenced the subcellular distribution of metals, the efflux pump kinetics, and morphological changes in metal-tolerant bacteria. B. cereus M6 exhibited strong tolerance and resistance to the metals evaluated and efficiently removed the metal content by operating efflux pumps and accumulating mainly in membrane fraction. Also, it was found that the model that best fit the efflux corresponds to an equation for resonant oscillations. B. cereus M6 uses mechanisms, including efflux pumps, intracellular and extracellular accumulation in parallel in order to maintain metal levels below a toxic threshold and overcome the effects of high concentrations. These findings are an approach of an energy-dependent efflux system to eliminate excessive amounts of crude oil-associated metals in Bacillus. B. cereus M6 may potentially be useful in designing improved strategies for the bioremediation of soils polluted with metals. Additionally, the prediction model developed would be useful for improving the monitoring of in vitro and in vivo bioremediation processes.
机译:这项研究的目的是描述从重质原油(o)API重力11.5中分离出的天然蜡状芽孢杆菌M6用于耐受和/或抵抗有毒金属的机制。测定了金属的耐受性和Pb(II),Cr(VI)和As(V)的去除率。此外,我们证明了金属的亚细胞分布,外排泵动力学和耐金属细菌的形态变化。蜡状芽孢杆菌M6对所评价的金属表现出较强的耐受性和抗性,并且通过操作外排泵并主要在膜级分中积累来有效去除金属成分。此外,还发现最适合外排的模型对应于共振振荡的方程。蜡状芽孢杆菌M6利用各种机制,包括外排泵,并行的细胞内和细胞外蓄积,以保持金属水平低于毒性阈值并克服高浓度的影响。这些发现是一种依赖能量的外排系统消除芽孢杆菌中过量的原油相关金属的方法。蜡状芽孢杆菌M6可能在设计改良的策略以金属污染土壤的生物修复中可能有用。此外,开发的预测模型将有助于改善对体外和体内生物修复过程的监测。

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