Environmental Biotechnology, Indian Institute of Toxicology Research, Council of Scientific & Industrial Research, Lucknow 226001, India.
Biodegradation. 2012 Sep;23(5):673-82. doi: 10.1007/s10532-012-9543-z.
Environmental biodegradation of several chlorinated pesticides is limited by their low solubility and sorption to soil surfaces. To mitigate this problem we quantified the effect of three biosurfactant viz., rhamnolipid, sophorolipid and trehalose-containing lipid on the dissolution, bioavailability, and biodegradation of HCH-isomers in liquid culture and in contaminated soil. The effect of biosurfactants was evaluated through the critical micelle concentration (CMC) value as determined for each isomer. The surfactant increased the solubilization of HCH isomers by 3-9 folds with rhamnolipid and sophorolipid being more effective and showing maximum solubilization of HCH isomers at 40 μg/mL, compared to trehalose-containing lipid showing peak solubilization at 60 μg/mL. The degradation of HCH isomers by Sphingomonas sp. NM05 in surfactant-amended liquid mineral salts medium showed 30% enhancement in 2 days as compared to degradation in 10 days in the absence of surfactant. HCH-spiked soil slurry incubated with surfactant also showed around 30-50% enhanced degradation of HCH which was comparable to the corresponding batch culture experiments. Among the three surfactants, sophorolipid offered highest solubilization and enhanced degradation of HCH isomers both in liquid medium and soil culture. The results of this study suggest the effectiveness of surfactants in improving HCH degradation by increased bioaccessibility.
环境中多种氯代农药的生物降解受到其低溶解度和对土壤表面吸附的限制。为了解决这个问题,我们量化了三种生物表面活性剂(鼠李糖脂、槐糖脂和含有海藻糖的脂质)对 HCH 异构体在液体培养和污染土壤中的溶解、生物利用度和生物降解的影响。通过确定每种异构体的临界胶束浓度(CMC)值来评估表面活性剂的效果。与含有海藻糖的脂质相比,表面活性剂将 HCH 异构体的增溶作用提高了 3-9 倍,其中鼠李糖脂和槐糖脂的效果更显著,在 40μg/mL 时达到最大增溶作用,而含有海藻糖的脂质在 60μg/mL 时达到最大增溶作用。与没有表面活性剂的情况下 10 天的降解相比,施用以增加生物可利用性的表面活性剂后,Sphingomonas sp. NM05 在添加表面活性剂的液体矿物盐培养基中对 HCH 异构体的降解在 2 天内提高了 30%。用表面活性剂处理的 HCH 污染土壤悬浮液的孵育也显示出 HCH 降解增强了约 30-50%,与相应的批处理实验相当。在这三种表面活性剂中,槐糖脂在液体培养基和土壤培养中均提供了最高的 HCH 异构体增溶作用和增强的降解作用。本研究结果表明,表面活性剂在提高 HCH 降解的生物可及性方面是有效的。