Yuechun Zeng, Shaolin Sun, Pengfei Li, Xian Zhou, Jian Wang
{"title":"Neonicotinoid Insecticide-Degrading Bacteria and Their Application Potential in Contaminated Agricultural Soil Remediation","authors":"Yuechun Zeng, Shaolin Sun, Pengfei Li, Xian Zhou, Jian Wang","doi":"10.3390/agrochemicals3010004","DOIUrl":null,"url":null,"abstract":"Recent advances in the microbial degradation of persistent organic pollutants have the potential to mitigate the damage caused by anthropogenic activities that are harmfully impacting agriculture soil ecosystems and human health. In this paper, we summarize the pollution characteristics of neonicotinoid insecticides (NNIs) in agricultural fields in China and other countries and then discuss the existing research on screening for NNI-degrading functional bacterial strains, their degradation processes, the construction of microbial consortia, and strategies for their application. We explore the current needs and solutions for improving the microbial remediation rate of NNI-contaminated soil and how these solutions are being developed and applied. We highlight several scientific and technological advances in soil microbiome engineering, including the construction of microbial consortia with a broad spectrum of NNI degradation and microbial immobilization to improve competition with indigenous microorganisms through the provision of a microenvironment and niche suitable for NNI-degrading bacteria. This paper highlights the need for an interdisciplinary approach to improving the degradation capacity and in situ survival of NNI-degrading strains/microbial consortia to facilitate the remediation of NNI-contaminated soil using strains with a broad spectrum and high efficiency in NNI degradation.","PeriodicalId":502241,"journal":{"name":"Agrochemicals","volume":"94 23","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-01-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Agrochemicals","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3390/agrochemicals3010004","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Recent advances in the microbial degradation of persistent organic pollutants have the potential to mitigate the damage caused by anthropogenic activities that are harmfully impacting agriculture soil ecosystems and human health. In this paper, we summarize the pollution characteristics of neonicotinoid insecticides (NNIs) in agricultural fields in China and other countries and then discuss the existing research on screening for NNI-degrading functional bacterial strains, their degradation processes, the construction of microbial consortia, and strategies for their application. We explore the current needs and solutions for improving the microbial remediation rate of NNI-contaminated soil and how these solutions are being developed and applied. We highlight several scientific and technological advances in soil microbiome engineering, including the construction of microbial consortia with a broad spectrum of NNI degradation and microbial immobilization to improve competition with indigenous microorganisms through the provision of a microenvironment and niche suitable for NNI-degrading bacteria. This paper highlights the need for an interdisciplinary approach to improving the degradation capacity and in situ survival of NNI-degrading strains/microbial consortia to facilitate the remediation of NNI-contaminated soil using strains with a broad spectrum and high efficiency in NNI degradation.
微生物降解持久性有机污染物的最新研究进展有望减轻人类活动对农业土壤生态系统和人类健康造成的危害。本文概述了新烟碱类杀虫剂在中国和其他国家农田中的污染特征,然后讨论了现有的新烟碱类杀虫剂降解功能菌株筛选、降解过程、微生物联合体构建及其应用策略等方面的研究。我们探讨了当前提高受 NNI 污染土壤微生物修复率的需求和解决方案,以及这些解决方案是如何开发和应用的。我们重点介绍了土壤微生物组工程中的几项科学和技术进展,包括构建具有广泛 NNI 降解能力的微生物联合体,以及通过提供适合 NNI 降解细菌生长的微环境和生态位来改善与本地微生物竞争的微生物固定化。本文强调有必要采用跨学科方法来提高 NNI 降解菌株/微生物联合体的降解能力和原位存活率,以便利用具有广谱和高效 NNI 降解能力的菌株修复受 NNI 污染的土壤。