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Anaerobic Transformation of DDT Related to Iron(Ill) Reduction and Microbial Community Structure in Paddy Soils

机译:稻田土壤中滴滴涕的厌氧转化与铁还原和微生物群落结构的关系

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摘要

We studied the mechanisms of microbial transformation in functional bacteria on 1,1,1-trichloro-2,2-bis(p-chIorophenyl)ethane (DDT) in two different field soils, Haiyan (HY) and Chenghai (CH). The results showed that microbial activities had a steady dechlorination effect on DDT and its metabolites (DDx). Adding, lactate or glucose as carbon sources increased the amount of Desulfuromonas, Sedimentibacter, and Clostridium bacteria, which led to an increase in adsorbed Fe(II) and resulted in increased DDT transformation rates, The electron shuttle of anthraquinone-2,6-disulfonic disodium salt resulted in an increase in the negative potential of soil by mediating the electron transfer from the bacteria to the DDT. Moreover, the DDT-degrading bacteria in the CH soil were more abundant than those in the HY soil, which led to higher DDT transformation rates in the CH soil. The most stable compound of DDx was l,l-dichloro-2,2-bis(p-chloro-phenyl)ethane, which also was the major dechlorination metabolite of DDT, and 1-chloro-2,2-bis-(p-chlorophenyl) ethane and 4,4'-dichlorobenzo-phenone were found to be the terminal metabolites in the anaerobic soils.
机译:我们研究了在两种不同的田间土壤,海盐(HY)和澄海(CH)上的1,1,1-三氯-2,2-双(对氯苯基)乙烷(DDT)上功能细菌中微生物转化的机制。结果表明,微生物活性对滴滴涕及其代谢产物(DDx)具有稳定的脱氯作用。添加乳酸或葡萄糖作为碳源增加了脱硫尿单胞菌,沉香杆菌和梭状芽胞杆菌的数量,从而导致吸附的Fe(II)的增加并导致DDT转化率提高。蒽醌-2,6-二磺酸的电子传递通过介导从细菌到滴滴涕的电子转移,二钠盐导致土壤的负电位增加。此外,CH土壤中降解DDT的细菌比HY土壤中的细菌丰富,这导致CH土壤中较高的DDT转化率。 DDx最稳定的化合物是1,1-二氯-2,2-双(对氯苯基)乙烷,它也是DDT的主要脱氯代谢产物,以及1-氯-2,2-双-(p在厌氧土壤中发现了-(氯苯基)乙烷和4,4'-二氯苯甲酮是末端代谢产物。

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