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首页> 外文期刊>Environmental microbiology >A novel pathway for mineralization of the thiocarbamate herbicide molinate by a defined bacterial mixed culture
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A novel pathway for mineralization of the thiocarbamate herbicide molinate by a defined bacterial mixed culture

机译:明确的细菌混合培养物使硫代氨基甲酸酯除草剂草酸盐生成矿物质的新途径

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摘要

A bacterial mixed culture able to mineralize monlinate was established, through enrichment, using mineral medium with molinate as the only carbon, nitrogen and energy source. The combination of five cultivable isolates, purified from the enrichment culture, permitted the reconstitution of a degrading consortium. Both enrichment and defined cultures were able to mineralized molinate without accumulation of degradation products by the end of the growth. Among the five isolates constituting the defined mixed culture, an actinomycete, strain ON4, was essential for biodegradation, being involved in the cleavage of the thioester bond of molinate, the initial step of the degradation pathway. Isolate ON4 was able to grow on molinate at concentrations below 2 mM, with the accumulation of ethanethiol and diethyl disulphide. These sulphur compounds were toxic to strain ON4 when accumulating at higher concentrations. However, this inhibitory effect was avoided by the presence of other members of the mixed culture, out of which isolates ON1 and ON2 were observed to consume ethanethiol and diethyl disulphide. In this way, interactions among defined mixed culture members involve metabolic and detoxifying association.
机译:通过使用富林酸盐作为唯一碳,氮和能源的矿物质培养基,通过富集建立了一种能够使菊红酸盐矿化的细菌混合培养物。从富集培养物中纯化得到的五种可分离菌株的组合,可以重组降解的聚生体。到生长结束时,富集培养和限定培养都能够使molinate矿化而不会积累降解产物。在构成确定的混合培养物的五个分离物中,放线菌菌株ON4是生物降解所必需的,参与了降解途径的起始步骤-裂解脯氨酸的硫酯键。分离物ON4能够在浓度低于2 mM的苹果酸盐上生长,并带有乙硫醇和二乙基二硫化物的积累。当以更高的浓度积累时,这些硫化合物对菌株ON4有毒。但是,混合培养物中其他成员的存在避免了这种抑制作用,从中发现分离物ON1和ON2消耗了乙硫醇和二乙基二硫化物。以这种方式,确定的混合培养物成员之间的相互作用涉及代谢和解毒联合。

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