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基于代谢组学揭示农药对植物不良影响的机制性见解:交互式综述

Metabolomics-Based Mechanistic Insights into Revealing the Adverse Effects of Pesticides on Plants: An Interactive Review.

作者信息

Shahid Mohammad, Singh Udai B, Khan Mohammad Saghir

机构信息

Plant-Microbe Interaction and Rhizosphere Biology Lab, ICAR-National Bureau of Agriculturally Important Microorganisms (NBAIM), Kushmaur, Mau Nath Bhanjan 275103, Uttar Pradesh, India.

Department of Agricultural Microbiology, Faculty of Agriculture Science, Aligarh Muslim University (A.M.U.), Aligarh 202001, Uttar Pradesh, India.

出版信息

Metabolites. 2023 Feb 8;13(2):246. doi: 10.3390/metabo13020246.

Abstract

In plant biology, metabolomics is often used to quantitatively assess small molecules, metabolites, and their intermediates in plants. Metabolomics has frequently been applied to detect metabolic alterations in plants exposed to various biotic and abiotic stresses, including pesticides. The widespread use of pesticides and agrochemicals in intensive crop production systems is a serious threat to the functionality and sustainability of agroecosystems. Pesticide accumulation in soil may disrupt soil-plant relationships, thereby posing a pollution risk to agricultural output. Application of metabolomic techniques in the assessment of the biological consequences of pesticides at the molecular level has emerged as a crucial technique in exposome investigations. State-of-the-art metabolomic approaches such as GC-MS, LC-MS/MS UHPLC, UPLC-IMS-QToF, GC/EI/MS, MALDI-TOF MS, and H-HR-MAS NMR, etc., investigating the harmful effects of agricultural pesticides have been reviewed. This updated review seeks to outline the key uses of metabolomics related to the evaluation of the toxicological impacts of pesticides on agronomically important crops in exposome assays as well as bench-scale studies. Overall, this review describes the potential uses of metabolomics as a method for evaluating the safety of agricultural chemicals for regulatory applications. Additionally, the most recent developments in metabolomic tools applied to pesticide toxicology and also the difficulties in utilizing this approach are discussed.

摘要

在植物生物学中,代谢组学常用于定量评估植物中的小分子、代谢物及其中间体。代谢组学经常被应用于检测暴露于各种生物和非生物胁迫(包括农药)下的植物的代谢变化。在集约化作物生产系统中广泛使用农药和农用化学品对农业生态系统的功能和可持续性构成严重威胁。农药在土壤中的积累可能会破坏土壤与植物的关系,从而对农业产出造成污染风险。在分子水平上应用代谢组学技术评估农药的生物学后果已成为暴露组研究中的一项关键技术。本文综述了诸如气相色谱 - 质谱联用(GC-MS)、液相色谱 - 串联质谱联用(LC-MS/MS)、超高效液相色谱 - 离子淌度 - 四极杆飞行时间质谱联用(UHPLC-IMS-QToF)、气相色谱/电子轰击质谱联用(GC/EI/MS)、基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)以及高分辨魔角旋转核磁共振(H-HR-MAS NMR)等前沿代谢组学方法在研究农用农药有害影响方面的应用。这篇更新后的综述旨在概述代谢组学在暴露组分析以及实验室规模研究中与评估农药对重要农作物毒理学影响相关的关键用途。总体而言,本综述描述了代谢组学作为评估农用化学品安全性以用于监管应用的一种方法的潜在用途。此外,还讨论了应用于农药毒理学的代谢组学工具的最新进展以及使用该方法所面临的困难。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e2f/9958811/7b54b8059baf/metabolites-13-00246-g001.jpg

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