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Characterization of a strain capable of degrading a herbicide mixture of quinclorac and bensulfuronmethyl

机译:能够降解喹氯拉克和苄嘧磺隆的除草剂混合物的菌株的表征

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A bacterial strain, designated as LS, was isolated from a contaminated soil and was found to be capable of utilizing quinclorac, bensulfuronmethyl, and a mixture of the two as carbon and energy sources for growth. Strain LS was identified as Ochrobactrum sp. based on its physiological-bioclicinical properties, 16S rDNA sequences, and phylogenetic analysis. The extent of degradation of quinclorac and bensulfuronmethyl at initial concentrations of 1.5 and 0.1 g L-1 was 90% and 67%, respectively, as measured by high performance liquid chromatography (HPLC). When a herbicide mixture of 0.34 g L-1 quinclorac and 0.02 g L-1 bensulfuronmethyl was applied as carbon sources, quinclorac and bensulfuronmethyl were degraded at 95.7% and 67.5%, respectively. It appears that quinclorac is utilized more easily in a mixture than in a single state. The optimal temperature for growth of strain LS was 37 degrees C. Strain LS grew well at pH 6 to 9 and had the highest degradation level for quinclorac anti bensulfuronmethyl at an initial pH of 7 and 8, respectively. Addition of 0.25 g L-1 yeast extract could promote the growth and extent of degradation of quinclorac and bensulfuronmethyl by Strain LS. Strain LS also showed the capability to degrade other aromatic compounds such as catechol, propisochlor, 4-chloro-2-methylphenoxyacetic acid sodium (MCPA-Na) and imazethapy. The isolate LS shows a huge, potential to be used in bioremediation for treating complex herbicide residues.
机译:从被污染的土壤中分离出一种细菌菌株,命名为LS,发现该菌株能够利用喹克洛拉克,苄磺隆甲基和二者的混合物作为生长的碳源和能源。 LS菌株被鉴定为Ochrobactrum sp。基于其生理-生物临床特性,16S rDNA序列和系统发育分析。通过高效液相色谱(HPLC)测定,在1.5和0.1 g L-1的初始浓度下,喹克拉拉克和苄嘧磺隆的降解程度分别为90%和67%。当使用0.34 g L-1 quinclorac和0.02 g L-1苯磺隆甲基的除草剂混合物作为碳源时,quinclorac和苯磺隆甲基的降解率分别为95.7%和67.5%。看起来,喹氯拉克在混合物中比在单一状态下更容易使用。菌株LS的生长的最佳温度为37℃。菌株LS在pH 6至9下生长良好,并且在初始pH分别为7和8时,喹克洛rac抗苄磺隆甲基的降解水平最高。添加0.25 g L-1酵母提取物可促进菌株LS抑制喹喹啉酸和苄嘧磺隆的生长和降解程度。 LS菌株还显示出降解其他芳族化合物的能力,例如邻苯二酚,异丙氯,4-氯-2-甲基苯氧基乙酸钠(MCPA-Na)和咪唑并吡py。分离株LS具有巨大的潜力,可用于生物修复中处理复杂的除草剂残留物。

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