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Reductive Dechlorination of Chlorinated Ethenes and 12-Dichloroethane by Dehalococcoides ethenogenes 195

机译:195 Dehalococcoides ethenogenes对氯化乙烯和12-二氯乙烷的还原脱氯195

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摘要

“Dehalococcoides ethenogenes” 195 can reductively dechlorinate tetrachloroethene (PCE) completely to ethene (ETH). When PCE-grown strain 195 was transferred (2% [vol/vol] inoculum) into growth medium amended with trichloroethene (TCE), cis-dichloroethene (DCE), 1,1-DCE, or 1,2-dichloroethane (DCA) as an electron acceptor, these chlorinated compounds were consumed at increasing rates over time, which indicated that growth occurred. Moreover, the number of cells increased when TCE, 1,1-DCE, or DCA was present. PCE, TCE, 1,1-DCE, and cis-DCE were converted mainly to vinyl chloride (VC) and then to ETH, while DCA was converted to ca. 99% ETH and 1% VC. cis-DCE was used at lower rates than PCE, TCE, 1,1-DCE, or DCA was used. When PCE-grown cultures were transferred to media containing VC or trans-DCE, products accumulated slowly, and there was no increase in the rate, which indicated that these two compounds did not support growth. When the intermediates in PCE dechlorination by strain 195 were monitored, TCE was detected first, followed by cis-DCE. After a lag, VC, 1,1-DCE, and trans-DCE accumulated, which is consistent with the hypothesis that cis-DCE is the precursor of these compounds. Both cis-DCE and 1,1-DCE were eventually consumed, and both of these compounds could be considered intermediates in PCE dechlorination, whereas the small amount of trans-DCE that was produced persisted. Cultures grown on TCE, 1,1-DCE, or DCA could immediately dechlorinate PCE, which indicated that PCE reductive dehalogenase activity was constitutive when these electron acceptors were used.
机译:“埃塞俄比亚脱卤代球菌” 195可将四氯乙烯(PCE)完全还原脱氯为乙烯(ETH)。当PCE生长的菌株195(2%(体积/体积)接种物)转移到用三氯乙烯(TCE),顺二氯乙烯(DCE),1,1-DCE或1,2-二氯乙烷(DCA)修正的生长培养基中时作为电子受体,这些氯化化合物的消耗量随着时间的流逝而增加,这表明发生了增长。此外,当存在TCE,1,1-DCE或DCA时,细胞数量增加。 PCE,TCE,1,1-DCE和顺式DCE主要转化为氯乙烯(VC),然后再转化为ETH,而DCA转化为大约。 99%ETH和1%VC。顺式-DCE的使用率低于使用PCE,TCE,1,1-DCE或DCA的使用率。当PCE生长的培养物转移到含有VC或trans-DCE的培养基中时,产物积累缓慢,并且速率没有增加,这表明这两种化合物不支持生长。当监测通过菌株195进行PCE脱氯的中间体时,首先检测到TCE,然后检测到顺式DCE。滞后后,VC,1,1-DCE和反式DCE累积,这与以下假设相符:顺式DCE是这些化合物的前体。顺式-DCE和1,1-DCE最终都被消耗掉了,这两种化合物都可以视为PCE脱氯的中间体,而产生的少量反式DCE仍然存在。在TCE,1,1-DCE或DCA上生长的培养物可以立即对PCE进行脱氯,这表明使用这些电子受体时PCE还原性脱卤素酶活性是组成性的。

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