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Biodegradation of Isofenphos-Methyl by Using Isolated and Mixed Cultures of Lactobacillus sp.M1 and Micrococcus sp.M2

机译:使用乳杆菌SP.m1和Micrococcus Sc.m2的分离和混合培养物生物降解 - 甲基甲基

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As one of the most widely used organophosphorus insecticides, isofenphos-methyl (IM) is usually detectable in the environment. In this paper, biodegradation of IM in aqueous environment by bacteria isolated from contaminated soil has been studied. Based on the physiological and biochemical characteristics tests results and 16SrDNA gene sequence analysis, two strains were identified respectively as Lactobacillus sp. M1 and Micrococcus sp. M2. They could utilize IM as the sole carbon source and nitrogen source during their growth period. The degradation rates of IM by strains M1 and M2 were 90.84% and 91.76%, respectively. The strain W1 and W2 were mixed culturing proportionately. Under optimal conditions (pH 6.0-8.0, temperature 30 , and °C glucose addition 1.0 g/L), the degradation rate of IM with 300 mg/L reached to 93.80% in 72 h by the mixed bacterium. The mixed bacterium also showed the better degradation stability than single strain. This study could be lain a foundation for the further study on microbial degradation and bioremediation of organophosphorus pesticide contaminated soil.
机译:作为最广泛使用的有机磷酸杀虫剂之一,Isofenphos-甲基(IM)通常可在环境中可检测。本文研究了从受污染土壤中分离的细菌水环境中IM的生物降解。基于生理和生化特性试验结果和16SRDNA基因序列分析,分别鉴定了两种菌株作为乳杆菌SP。 m1和micrococcus sp。 M2。它们可以在其生长期内使用IM作为唯一的碳源和氮源。 IM通过菌株M1和M2的降解率分别为90.84%和91.76%。菌株W1和W2与按比例混合培养。在最佳条件下(pH6.0-8.0,温度30和°C葡萄糖加入1.0g / L),混合细菌的300mg / L的降解速率达到72小时的93.80%。混合细菌还显示出比单株更好的降解稳定性。本研究可能是对有机磷农药污染土壤微生物降解和生物修复的进一步研究。

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