农田微生物区系对农药污染土壤的修复作用

J. Sivakumar
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摘要

农药的广泛使用导致了土壤、水和空气环境质量的失衡。只有结合从某些污染环境中分离出来的天然细菌和天然细菌组成的微生物联合体,才能更快地分解农药。为了恢复农药污染土壤的活力,采集了土壤样品,并从土壤样品中分离出微生物区系。将这些菌群引入威威利、敌敌畏和马拉硫磷(CMM)三种农药中,研究其生物降解活性。按照标准微生物学规程从收集的土壤样品中分离微生物菌群。分离的微生物菌株通过基因组DNA的分离得到证实。用分离得到的菌株进行了对威威、敌敌畏、马拉硫磷(CMM)等农药的生物降解。假单胞菌、芽孢杆菌、微球菌等细菌;放线菌-氮扎杆菌;田间分离到烟曲霉(Aspergillus fumigatus)、Gliocladium sp、Humicola sp等真菌。其中芽孢杆菌对三种农药的生物降解活性最高。筛选了西威因、氯磷、马拉硫磷(CMM)等几种农药的最佳微生物、最佳降解方法和最佳降解环境,为后续研究提供了更为实际的参考。
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Rejuvenation of Pesticide Polluted Soil from the Isolated Microbial Flora of Agricultural Field
The widespread use of pesticides leads to imbalances in the qualities of soil, water, and air environments. Pesticides can only be broken down more quickly by combining microbial consortia of native and naturally occurring bacteria isolated from certain polluted environments. To rejuvenate the pesticide polluted soil, the samples was collected and microbial flora were isolated from the soil samples. These floras were introduced into the three pesticides like Carbaryl, Monocrotophos and Malathion (CMM) for the biodegradation activity. Standard microbiological protocols were followed to isolate the microbial flora from the collected soil samples. The isolated microbial strains were confirmed with the isolation of genomic DNA. The biodegradation of pesticides such as Carbaryl, Monocrotophos and Malathion (CMM) were performed with the isolated strains. The bacterial strains such as Pseudomonas sp, Bacillus sp and Micrococcus sp; actinomycetes – Azatobacter; fungal species such as Aspergillus fumigatus, Gliocladium sp and Humicola sp were isolated from the agricultural field. Among these Bacillus sp showed highest biodegradation activity against the three pesticides. These investigations screened the best microorganism for several pesticides, including carbaryl, Monocrotophos, and Malathion (CMM), the best degradation methods, and the best degradation environment, providing a more practical reference for subsequent study.
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