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首页> 外文期刊>Scientific reports. >Transformation of the recalcitrant pesticide chlordecone by Desulfovibrio sp.86 with a switch from ring-opening dechlorination to reductive sulfidation activity
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Transformation of the recalcitrant pesticide chlordecone by Desulfovibrio sp.86 with a switch from ring-opening dechlorination to reductive sulfidation activity

机译:用开环脱氯的开关通过开关通过开关转化醋酸核杀虫剂Chlordecone以减少硫化活性

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摘要

The insecticide chlordecone has been used in the French West Indies for decades, resulting in long term pollution, human health problems and social crisis. In addition to bacterial consortia and Citrobacter sp.86 previously described to transform chlordecone into three families of transformation products (A: hydrochlordecones, B: polychloroindenes and C: polychloroindenecarboxylic acids), another bacterium Desulfovibrio sp.86, showing the same abilities has been isolated and its genome was sequenced. Ring-opening dechlorination, leading to A, B and C families, was observed as previously described. Changing operating conditions in the presence of chlordecone gave rise to the formation of an unknown sulfur-containing transformation product instead of the aforementioned ones. Its structural elucidation enabled to conclude to a thiol derivative, which corresponds to an undocumented bacterial reductive sulfidation. Microbial experiments pointed out that the chlordecone thiol derivative was observed in anaerobiosis, and required the presence of an electron acceptor containing sulfur or hydrogen sulfide, in a confined atmosphere. It seems that this new reaction is also active on hydrochlordecones, as the 10-monohydrochlordecone A1 was transformed the same way. Moreover, the chlordecone thiol derivative called F1 was detected in several chlordecone contaminated mangrove bed sediments from Martinique Island, highlighting the environmental relevance of these results.
机译:杀虫剂Chlordecone已在法国西印度群中使用数十年来,导致长期污染,人类健康问题和社会危机。除了细菌聚焦和柑橘杆菌SP.86外面描述了将氯福酮转化为三个转化产品(A:HydrochlordeCones,B:聚氯吲哚和C:聚氯吲哚羧酸),另一种脱硫脱硫Sp.86,显示出相同的能力已被分离出来并测序其基因组。如前所述观察到导致A,B和C系列的开环脱氯。在Chlordecone存在下改变操作条件使得形成形成未知的含硫转化产物而不是上述含硫的转变产物。其结构阐明使得能够得出结论至硫醇衍生物,这对应于无证细菌还原硫化。微生物实验指出,在厌氧中观察氯酮硫醇衍生物,并在狭窄的气氛中需要含有硫或硫化氢的电子受体。似乎,这种新反应也在氢核醛酮上活性,因为10-单羟基葡萄酮A1以相同的方式转化。此外,在Martinique岛的几种Chlordecone污染的红树林床沉积物中检测到称为F1的Chlordecone硫醇衍生物,突出了这些结果的环境相关性。

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