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Fungal and Bacterial Co-Bioaugmentation of a Pesticide-Degrading Biomixture: Pesticide Removal and Community Structure Variations during Different Treatments

机译:降解农药的生物混合物的真菌和细菌共生物增强作用:不同处理过程中的农药去除和群落结构变化

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Biopurification systems (BPS) are employed for the treatment of pesticide-containing wastewaters. In this work, a biomixture (active core of BPS) complemented by the addition of the fungus Trametes versicolor was evaluated for the elimination of a mixture of pesticides under different treatment conditions. The biomixture achieved high removal of all the pesticides assayed after 16 d: atrazine (68.4%, t(1/2): 9.6 d), carbendazim (96.7%, t(1/2): 3.6 d), carbofuran (98.7%, t(1/2): 3.1 d) and metalaxyl (96.7%, t(1/2): 3.8 d). Variations in the treatment conditions including addition of the antibiotic oxytetracycline and co-bioaugmentation with a bacterial consortium did not significantly affect the removal performance of the biomixture. Bacterial and fungal community profiles determined by DGGE analyses revealed changes that responded to biomixture aging, and not to antibiotic or pesticide addition. The proposed biomixture exhibits very efficient elimination during simultaneous pesticide application; moreover, the matrix is highly stable during stressful conditions such as the co-application of antibiotics of agricultural use.
机译:生物净化系统(BPS)用于处理含农药的废水。在这项工作中,评估了在不同处理条件下生物混合物(BPS的活性核心)辅以添加杂色菌Trametes versicolor的效果,以消除农药混合物。生物混合物实现了16天后测定的所有农药的高去除率:阿特拉津(68.4%,t(1/2):9.6 d),多菌灵(96.7%,t(1/2):3.6 d),呋喃丹(98.7%) ,t(1/2):3.1d)和甲霜灵(96.7%,t(1/2):3.8d)。处理条件的变化(包括添加抗生素土霉素和与细菌联合体共同生物增强)不会显着影响生物混合物的去除性能。通过DGGE分析确定的细菌和真菌群落概况揭示了对生物混合物老化而不是对抗生素或杀虫剂添加有反应的变化。拟议的生物混合物在同时施用农药的过程中表现出非常有效的消除效果。此外,该基质在压力条件下是高度稳定的,例如在农业上共同使用抗生素。

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