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微生物群落对土壤中有机磷农药磷胺的生物修复。

Bioremediation of organophosphorus pesticide phorate in soil by microbial consortia.

机构信息

Department of Microbiology, Punjab Agricultural University, Ludhiana, Punjab, India.

Insect Molecular Biology Laboratory, Department of Entomology, Punjab Agricultural University, Ludhiana, Punjab, India.

出版信息

Ecotoxicol Environ Saf. 2018 Sep 15;159:310-316. doi: 10.1016/j.ecoenv.2018.04.063. Epub 2018 May 21.

Abstract

Microbial consortia isolated from aged phorate contaminated soil were used to degrade phorate. The consortia of three microorganisms (Brevibacterium frigoritolerans, Bacillus aerophilus and Pseudomonas fulva) could degrade phorate, and the highest phorate removal (between 97.65 and 98.31%) was found in soils inoculated with mixed cultures of all the three bacterial species. However, the mixed activity of any of two of these bacteria was lower than mixed consortia of all the three bacterial species. The highest degradation by individual mixed consortia of (B. frigoritolerans+B.aerophilus, B. aerophilus+P. fulva and B. frigoritolerans+P. fulva) appeared in soil between (92.28-94.09%, 95.45-97.15% and 94.08-97.42%, respectively). Therefore, inoculation of highly potential microbial consortia isolated from in situ contaminated soil could result in most effective bioremediation consortia for significantly relieving soils from phorate residues. This much high phorate remediation from phorate contaminated soils have never been reported earlier by mixed culture of native soil bacterial isolates.

摘要

从陈磷污染土壤中分离出的微生物群落被用于降解陈磷。由三种微生物(耐冷短杆菌、嗜气杆菌和黄腐酸假单胞菌)组成的群落可以降解陈磷,在接种了所有三种细菌混合培养物的土壤中,陈磷的去除率最高(在 97.65%至 98.31%之间)。然而,这两种细菌中任何两种的混合活性都低于所有三种细菌的混合群落。单一混合群落(B. frigoritolerans+B.aerophilus、B. aerophilus+P. fulva 和 B. frigoritolerans+P. fulva)的最高降解率分别出现在土壤中(92.28-94.09%、95.45-97.15%和 94.08-97.42%)。因此,接种从原位污染土壤中分离出的高潜力微生物群落可能会产生最有效的生物修复群落,从而显著减轻土壤中的陈磷残留。与混合培养的本地土壤细菌分离株相比,以前从未报道过从陈磷污染土壤中进行如此高的陈磷修复。

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