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Degradation of endosulfan and endosulfan sulfate by white-rot fungus Trametes hirsuta

机译:白腐真菌Tramets hirsuta降解硫丹和硫酸硫丹

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Endosulfan, an organochlorine insecticide, and its metabolite endosulfan sulfate are persistent in environments and are considered toxic. We investigate the possible nontoxic bioremediation of endosulfan. An endosulfandegrading fungus that does not produce endosulfan sulfate was selected from eight species of white-rot fungi. High degradation of endosulfan and low accumulation of endosulfan sulfate were found in cultures of Trametes hirsuta. A degradation experiment using endosulfan sulfate as the substrate revealed that T. hirsuta is able to further degrade endosulfan sulfate following the oxidative conversion of endosulfan to endosulfan sulfate. Endosulfan and endosulfan sulfate were converted to several metabolites via hydrolytic pathways. In addition, endosulfan dimethylene, previously reported as a metabolite of the soil bacterium Arthrobacter sp., was detected in T. hirsuta culture containing endosulfan sulfate. Our results suggest that T. hirsuta has multiple pathways for the degradation of endosulfan and endosulfan sulfate and thus has great potential for use as a biocatalyst in endosulfan bioremediation.
机译:硫丹(一种有机氯杀虫剂)及其代谢产物硫丹硫酸盐在环境中具有持久性,并被认为具有毒性。我们调查了硫丹的可能的无毒生物修复。从八种白腐真菌中选择不产生硫丹硫酸盐的硫丹降解真菌。在trametes hirsuta的培养物中发现了硫丹的高度降解和硫丹的低积累。使用硫酸硫丹作为底物的降解实验表明,hirsuta T.能够在硫丹氧化转化为硫酸硫丹后进一步降解硫酸硫丹。硫丹和硫酸硫丹通过水解途径转化为几种代谢物。另外,在含有硫酸硫丹的hirsuta T.培养物中检测到硫丹二亚甲基,以前被报道为土壤细菌节杆菌的代谢产物。我们的结果表明,hirsuta T.有多种途径降解硫丹和硫丹硫酸盐,因此具有作为硫丹生物修复生物催化剂的巨大潜力。

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