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首页> 外文期刊>Environmental Science and Pollution Research >Diazinon dissipation in pesticide-contaminated paddy soil: kinetic modeling and isolation of a degrading mixed bacterial culture
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Diazinon dissipation in pesticide-contaminated paddy soil: kinetic modeling and isolation of a degrading mixed bacterial culture

机译:农药污染水稻土的二嗪响散耗散:动力学建模与降解混合细菌培养的动力学建模与分离

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Dissipation kinetics of diazinon was investigated in soils culled from a paddy field with a long history of the pesticide application. Goodness of fit statistical indices derived from several fitted mono-and bi-exponential kinetic models revealed a bi-phasic pattern of the diazinon dissipation curve at 15 and 150 mg kg(-1) spiking levels, which could be described best by the first-order double exponential decay (FODED) model. Parameters obtained from this model were able to describe the enhanced dissipation of diazinon as the result of repeated soil applications, where a larger fraction of the pesticide readily available in the solution phase was dissipated with a fast rate. Cluster and principal component analysis (PCA) of denaturing gradient gel electrophoresis (DGGE) obtained from soil bacterial populations revealed that they were only affected at the 150 mg kg(-1) diazinon concentration. This was also supported by the phylogenetic tree obtained from sequences of the main gel bands. Accordingly, bacterial populations belonging to Proteobacteria were enriched in the soil following three treatments with diazinon at 150 mg kg(-1). The Shannon's index revealed a nonsignificant increase (P <= 0.05) in overall diversity of soil bacteria following diazinon application. Diazinon-degrading bacteria were isolated from the paddy soils in a mineral salt medium. Results showed that the isolated mixed culture was able to remove 90% of the pesticide at two concentrations of 50 and 100 mg L-1 by 16.81 and 19.60 days, respectively. Sequencing the DGGE bands confirmed the role of Betaproteobacteria as the main components of the isolated mixed culture in the degradation of diazinon.
机译:在稻田覆盖的土壤中研究了一种二嗪孔的耗散动力学,具有农药应用的历史悠久。衍生自一些拟合单和双指数动力学模型的适合统计指标的良好揭示了在15和150mg kg(-1)×gg(-1)×gg(-1)尖峰水平的双相位图案,这可以通过第一 - 订单双指数衰减(FODED)模型。从该模型中获得的参数能够描述作为重复的土壤应用的产生增强的二嗪耗散,其中溶液溶液中容易获得的较大部分的较大部分以快速耗散。从土壤细菌群中获得的变性梯度凝胶电泳(DGGE)的聚类和主成分分析(PCA)显示它们仅在150mg kg(-1)二嗪孔浓度下受到影响。这也得到了从主凝胶带的序列获得的系统发育树的支持。因此,在150mg kg(-1)的三种处理后,在三种处理后,属于植物的细菌群体富含植物。 Shannon的指数揭示了在Diazinon应用后的土壤细菌的整体多样性增加(p <= 0.05)。从矿物盐培养基中的水稻土中分离出一种二嗪龙降解细菌。结果表明,分离的混合培养物能够以分别为50%至100mg L-1的浓度除去90%的农药,分别达16.81和19.60天。测序DGGE带确认了BetapRoteobacteria作为分离的混合培养的主要成分在二嗪酮的降解中的主要成分。

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