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首页> 外文期刊>FEMS Microbiology Letters >Syntrophic biodegradation of butachlor by Mycobacterium sp. J7A and Sphingobium sp. J7B isolated from rice paddy soil
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Syntrophic biodegradation of butachlor by Mycobacterium sp. J7A and Sphingobium sp. J7B isolated from rice paddy soil

机译:分枝杆菌属菌对丁草胺的共生生物降解。 J7A和鞘氨醇sp。从稻田土壤中分离出J7B

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Two bacterial strains involved in syntrophic degradation of chloroacetamide herbicide butachlor were isolated from a rice paddy soil. Analysis of 16S rRNA gene sequences indicated that the two isolates were related to members of the genera Mycobacterium and Sphingobium, respectively. Thus, a pair consisted of Mycobacterium sp. J7A and Sphingobium sp. J7B could rapidly degrade butachlor (100?mg?L~(-1)) at 28?°C within 24?h, while each isolate alone was not able to completely degrade butachlor. The isolate Mycobacterium sp. J7A was observed to grow slightly on butachlor, possibly utilizing the alkyl side chain of butachlor as its carbon and energy source, but the isolate Sphingobium sp. J7B alone could not grow on butachlor at all. Gas chromatography-mass spectrometry on catabolic intermediates revealed that the strain J7A produced and accumulated 2-chloro-N-(2,6-diethylphenyl) acetamide (CDEPA) during growth on butachlor. This intermediate was not further degraded by strain J7A, but strain J7B was observed to be able to completely degrade and grow on it through 2,6-diethylaniline (DEA). The results showed that butachlor was completely degraded by the two isolates by syntrophic metabolism, in which strain Mycobacterium sp. J7A degraded butachlor to CDEPA, which was subsequently degraded by strain Sphingobium sp. J7B through DEA.
机译:从稻田土壤中分离出了两种涉及氯乙酰胺除草剂丁草胺的营养降解的细菌菌株。对16S rRNA基因序列的分析表明,这两个分离物分别与分枝杆菌属和鞘氨醇属的成员有关。因此,一对由分枝杆菌属组成。 J7A和鞘氨醇sp。 J7B可以在28℃在24?h内迅速降解丁草胺(100?mg?L〜(-1)),而单独的每种分离物都不能完全降解丁草胺。分离株分枝杆菌。观察到J7A在丁草胺上略有生长,可能利用了丁草胺的烷基侧链作为其碳和能源,但分离物鞘氨醇单胞菌sp。仅J7B根本不能在丁草胺上生长。分解代谢中间体的气相色谱-质谱分析表明,菌株J7A在丁草胺上生长期间产生并积累了2-氯-N-(2,6-二乙基苯基)乙酰胺(CDEPA)。该中间体没有被菌株J7A进一步降解,但观察到菌株J7B能够完全降解并通过2,6-二乙基苯胺(DEA)在其上生长。结果表明,丁草胺被两种分离物通过营养代谢完全降解,其中分枝杆菌属菌株。 J7A将丁草胺降解为CDEPA,随后被Sphingobium sp。菌株降解。 J7B通过DEA。

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