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Biotransformation of pertechnetate by Clostridia

机译:梭菌对高tech酸酯的生物转化

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Clostridia are strict anaerobic, spore-forming, fermentative bacteria commonly present in soils, sediments, and wastes; and, they play a major role in the decomposition of a wide variety of organic compounds. They also are involved in the reduction of iron, manganese, and uranium, thereby affecting their solubility. However, little is known of the ability of Clostridia to reduce technetium (Tc). We investigated the reduction and precipitation of pertechnetate by Clostridium sphenoides able to metabolize citrate as its sole carbon source, and Clostridium sp. capable of fermenting glucose but not citric acid. Both species reduced Tc(VII) to Tc(IV), although C. sphenoides did so at a greater rate and extent than Clostridium sp. The reduced Tc was predominantly associated with the cell biomass. It also was present in solution complexed with bacterial metabolic products (MW > 5000). Adding diethylenetriaminepentaacetic acid (DTPA) to Clostridium sp. resulted in the formation of a soluble Tc(IV)-DTPA complex, whereas with C. sphenoides only a small amount of Tc was present in solution, indicating that insoluble Tc species were formed. These results suggest that Clostridia may play a major role in regulating the mobility of Tc under anaerobic conditions in wastes and subsurface environments. [References: 18]
机译:梭状芽胞杆菌是严格的厌氧,可形成孢子的发酵细菌,通常存在于土壤,沉积物和废物中。并且它们在各种有机化合物的分解中起主要作用。它们还参与铁,锰和铀的还原,从而影响其溶解度。但是,梭状芽孢杆菌降低tech(Tc)的能力知之甚少。我们研究了能代谢柠檬酸盐作为唯一碳源的蝶形梭状芽孢杆菌和梭状芽孢杆菌对高tech酸盐的减少和沉淀。能够发酵葡萄糖而不是柠檬酸。两种物种都将Tc(VII)还原为Tc(IV),尽管蝶形梭菌以比梭状芽孢杆菌(Clostridium sp。)更高的速率和程度还原了Tc(VII)。降低的Tc主要与细胞生物量有关。它也存在于与细菌代谢产物复合的溶液中(MW> 5000)。将二亚乙基三胺五乙酸(DTPA)添加到梭状芽胞杆菌中。导致形成可溶性Tc(IV)-DTPA复合物,而对于蝶念珠菌,溶液中仅存在少量Tc,表明形成了不溶性Tc。这些结果表明,梭菌可能在废物和地下环境中在厌氧条件下调节Tc的流动性中起主要作用。 [参考:18]

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