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Evaluation of seven chemical pesticides by mixed microbial culture (PCS-1): Degradation ability, microbial community, and Medicago sativa phytotoxicity

植物毒性 苜蓿 杀虫剂 微生物种群生物学 微生物降解 农药降解 叶圈 生物修复 农学 化学 微生物 环境化学 园艺 污染 生物 细菌 生态学 遗传学
作者
Haiyun Li,Yizhi Qiu,Tuo Yao,Yachun Ma,Huirong Zhang,Xiaolei Yang,Changning Li
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:389: 121834-121834 被引量:56
标识
DOI:10.1016/j.jhazmat.2019.121834
摘要

Environmental problems caused by the large-scale use of chemical pesticides are becoming more and more serious, and the removal of chemical pesticides from the ecological environment by microbial degradation has attracted wide attention. In this study, using enrichment screening with seven chemical pesticides as the sole carbon source, a mixed microbial culture (PCS-1) was obtained from the continuous cropping of strawberry fields. The microbial community composition, degradation ability, and detoxification effect of PCS-1 was determined for the seven pesticides. Inoculation with PCS-1 showed significant degradation of and tolerance to the seven pesticides. Microbial community composition analysis indicated that Pseudomonas, Enterobacter, Aspergillus, and Rhodotorula were the dominant genera for the degradation of the seven pesticides by PCS-1. The concentration of the seven pesticides was 10 mg L−1 in hydroponic and soil culture experiments. The fresh weight, plant height, and root length of PCS-1-inoculated alfalfa (Medicago sativa) significantly increased compared with those of non-PCS-1-inoculated M. sativa. PCS-1 not only effectively degraded the residual content of the seven pesticides in water and soil but also reduced the pesticide residues in the roots, stems, and leaves of M. sativa. This study shows that PCS-1 may be important in environmental remediation involving the seven pesticides.

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