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挖掘微生物生物表面活性剂在农药修复中的作用:一种实现环境可持续性的生态友好方法。

Tapping the Role of Microbial Biosurfactants in Pesticide Remediation: An Eco-Friendly Approach for Environmental Sustainability.

作者信息

Raj Aman, Kumar Ashwani, Dames Joanna Felicity

机构信息

Metagenomics and Secretomics Research Laboratory, Department of Botany, Dr. Harisingh Gour University (Central University), Sagar, India.

Mycorrhizal Research Laboratory, Department of Biochemistry and Microbiology, Rhodes University, Grahamstown, South Africa.

出版信息

Front Microbiol. 2021 Dec 23;12:791723. doi: 10.3389/fmicb.2021.791723. eCollection 2021.

Abstract

Pesticides are used indiscriminately all over the world to protect crops from pests and pathogens. If they are used in excess, they contaminate the soil and water bodies and negatively affect human health and the environment. However, bioremediation is the most viable option to deal with these pollutants, but it has certain limitations. Therefore, harnessing the role of microbial biosurfactants in pesticide remediation is a promising approach. Biosurfactants are the amphiphilic compounds that can help to increase the bioavailability of pesticides, and speeds up the bioremediation process. Biosurfactants lower the surface area and interfacial tension of immiscible fluids and boost the solubility and sorption of hydrophobic pesticide contaminants. They have the property of biodegradability, low toxicity, high selectivity, and broad action spectrum under extreme pH, temperature, and salinity conditions, as well as a low critical micelle concentration (CMC). All these factors can augment the process of pesticide remediation. Application of metagenomic and tools would help by rapidly characterizing pesticide degrading microorganisms at a taxonomic and functional level. A comprehensive review of the literature shows that the role of biosurfactants in the biological remediation of pesticides has received limited attention. Therefore, this article is intended to provide a detailed overview of the role of various biosurfactants in improving pesticide remediation as well as different methods used for the detection of microbial biosurfactants. Additionally, this article covers the role of advanced metagenomics tools in characterizing the biosurfactant producing pesticide degrading microbes from different environments.

摘要

全世界都在不加区分地使用农药来保护作物免受害虫和病原体侵害。如果过量使用,它们会污染土壤和水体,并对人类健康和环境产生负面影响。然而,生物修复是处理这些污染物的最可行选择,但它有一定的局限性。因此,利用微生物生物表面活性剂在农药修复中的作用是一种很有前景的方法。生物表面活性剂是两亲性化合物,有助于提高农药的生物可利用性,并加速生物修复过程。生物表面活性剂降低了不混溶流体的表面积和界面张力,提高了疏水性农药污染物的溶解度和吸附性。它们具有生物可降解性、低毒性、高选择性,在极端pH、温度和盐度条件下具有广泛的作用谱,以及低临界胶束浓度(CMC)。所有这些因素都可以促进农药修复过程。宏基因组学和其他工具的应用将有助于在分类学和功能水平上快速鉴定降解农药的微生物。对文献的全面综述表明,生物表面活性剂在农药生物修复中的作用受到的关注有限。因此,本文旨在详细概述各种生物表面活性剂在改善农药修复中的作用以及用于检测微生物生物表面活性剂的不同方法。此外,本文还介绍了先进的宏基因组学工具在鉴定来自不同环境的产生生物表面活性剂的农药降解微生物方面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4668/8733403/75ed1c01657d/fmicb-12-791723-g001.jpg

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