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Isolation and characterization of a Mycobacterium strain that metabolizes the insecticide endosulfan

机译:代谢杀虫剂硫丹的分枝杆菌菌株的分离和鉴定

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Aim: The aim of this study was to isolate and characterize a bacterium capable of metabolizing endosulfan. Methods and Results: A endosulfan-degrading bacterium (strain ESD) was isolated from soil inoculum after repeated culture with the insecticide as the sole source of sulfur. Analysis of its 16S rRNA gene sequence, and morphological and physiological characteristics revealed it to be a new fast-growing Mycobacterium, closely related to other Mycobacterium species with xenobiotic-degrading capabilities. Degradation of endosulfan by strain ESD involved both oxidative and sulfur-separation reactions. Strain ESD did not degrade endosulfan when sulfite, sulphate or methionine were present in the medium along with the insecticide. Partial degradation occurred when the culture was grown, with endosulfan, in the presence of MOPS (3-(N-morpholino)-propane sulphonic acid), DMSO (dimethyl sulfoxide), cysteine or sulphonane and complete degradation occurred in the presence of gutathione. When both beta-endosulfan and low levels of sulphate were provided as the only sources of sulfur, biphasic exponential growth was observed with endosulfan metabolism being restricted to the latter phase of exponential growth. Conclusions: This study isolated a Mycobacterium strain (strain ESD) capable of metabolizing endosulfan by both oxidative and sulfur-separation reactions. The endosulfan-degrading reactions are a result of the sulfur-starvation response of this bacterium. Significance and Impact of the Study: This describes the isolation of a Mycobacterium strain capable of degrading the insecticide endosulfan. This bacterium is a valuable source of enzymes for use in enzymatic bioremediation of endosulfan residues.
机译:目的:本研究的目的是分离并鉴定能够代谢硫丹的细菌。方法和结果:以杀虫剂为唯一硫源反复培养后,从土壤接种物中分离出了硫丹降解菌(ESD菌株)。分析其16S rRNA基因序列,并从形态和生理学特征揭示,它是一种快速生长的新分枝杆菌,与其他具有异种降解能力的分枝杆菌密切相关。菌株ESD对硫丹的降解涉及氧化反应和硫分离反应。当亚硫酸盐,硫酸盐或蛋氨酸与杀虫剂一起存在于培养基中时,菌株ESD不会降解硫丹。当培养物与硫丹一起在MOPS(3-(N-吗啉代)丙烷磺酸),DMSO(二甲基亚砜),半胱氨酸或砜的存在下生长时,会发生部分降解,而在古他硫酮的存在下会发生完全降解。当同时提供β-硫丹和低含量的硫酸盐作为硫的唯一来源时,观察到双相指数增长,而硫丹代谢仅限于指数增长的后期。结论:本研究分离了能够通过氧化和硫分离反应代谢硫丹的分枝杆菌菌株(ESD菌株)。硫丹降解反应是该细菌的硫饥饿反应的结果。研究的意义和影响:这描述了能够降解杀虫剂硫丹的分枝杆菌菌株的分离。该细菌是用于硫丹残基的酶法生物修复的酶的重要来源。

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