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青霉菌株AJAG1对氟虫腈及其主要代谢产物氟虫腈砜的生物矿化作用,并进行了酶学研究和生物制剂开发。

Biomineralisation of fipronil and its major metabolite, fipronil sulfone, by Aspergillus glaucus strain AJAG1 with enzymes studies and bioformulation.

作者信息

Gajendiran Anudurga, Abraham Jayanthi

机构信息

Microbial Biotechnology Laboratory, School of Biosciences and Technology, VIT University, Vellore, Tamil Nadu, 632014, India.

出版信息

3 Biotech. 2017 Jul;7(3):212. doi: 10.1007/s13205-017-0820-8. Epub 2017 Jul 1.

DOI:10.1007/s13205-017-0820-8
PMID:28667652
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5493570/
Abstract

Fipronil is a phenylpryazole insecticide which is extensively used for the protection of agricultural yields. However, this insecticide poses various threats to  the environment. Therefore it is essential to develop an effective method to degrade or eliminate this pollutant from the  environment. In this present study, a fungal strain AJAG1 capable of degrading fipronil and its metabolite, fipronil sulfone, was isolated through enrichment technique. Isolated fungal strain was identified as Aspergillus glaucus based upon its morphological, and 18S rRNA sequence analysis. Strain AJAG1 could degrade 900 mg L of fipronil efficiently in both aqueous medium and soil. In addition, fipronil degradation was tested with various kinetic models and the results revealed that biodegradation in aqueous medium and soil was ascertained by pseudo-first order and zero order rate kinetics, respectively. The infrared spectrum of fipronil degraded sample confirmed the formation of esters, nitro, and alkanes groups. A tentative degradation pathway of fipronil by strain AJAG1 has been proposed on the basis of gas chromatography-mass spectrometry (GC-MS) analysis. The lignolytic enzymes activities were studied during fipronil degradation by strain AJAG1. Further, scanning electron microscopy (SEM) was used to examine the surface morphology of strain AJAG1 after fipronil degradation. In the present investigation, bioformulation of strain AJAG1 was developed using low cost materials such as groundnut shell powder, molasses, and fly ash to remediate the fipronil from agricultural field. These results highlight A. glaucus strain AJAG1 may have potential for use in bioremediation of fipronil-contaminated environment.

摘要

氟虫腈是一种苯基吡唑类杀虫剂,广泛用于保护农作物产量。然而,这种杀虫剂对环境构成了各种威胁。因此,开发一种有效的方法来降解或消除环境中的这种污染物至关重要。在本研究中,通过富集技术分离出了一种能够降解氟虫腈及其代谢产物氟虫腈砜的真菌菌株AJAG1。根据其形态学和18S rRNA序列分析,将分离出的真菌菌株鉴定为灰绿曲霉。菌株AJAG1能够在水介质和土壤中高效降解900mg/L的氟虫腈。此外,用各种动力学模型测试了氟虫腈的降解情况,结果表明,水介质和土壤中的生物降解分别由准一级和零级速率动力学确定。氟虫腈降解样品的红外光谱证实了酯、硝基和烷烃基团的形成。基于气相色谱-质谱(GC-MS)分析,提出了菌株AJAG1对氟虫腈的初步降解途径。研究了菌株AJAG1降解氟虫腈过程中的木质素分解酶活性。此外,利用扫描电子显微镜(SEM)观察了菌株AJAG1在氟虫腈降解后的表面形态。在本研究中,利用花生壳粉、糖蜜和粉煤灰等低成本材料开发了菌株AJAG1的生物制剂,以修复农田中的氟虫腈。这些结果表明,灰绿曲霉菌株AJAG1在氟虫腈污染环境的生物修复中可能具有应用潜力。

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