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预测不可预测的情况:除草剂交叉抗性的监管性质和混杂性。

Predicting the unpredictable: the regulatory nature and promiscuity of herbicide cross resistance.

机构信息

Department of Crop Sciences, University of Illinois, Urbana, IL, USA.

出版信息

Pest Manag Sci. 2024 Feb;80(2):235-244. doi: 10.1002/ps.7728. Epub 2023 Aug 28.

Abstract

The emergence of herbicide-resistant weeds is a significant threat to modern agriculture. Cross resistance, a phenomenon where resistance to one herbicide confers resistance to another, is a particular concern owing to its unpredictability. Nontarget-site (NTS) cross resistance is especially challenging to predict, as it arises from genes that encode enzymes that do not directly involve the herbicide target site and can affect multiple herbicides. Recent advancements in genomic and structural biology techniques could provide new venues for predicting NTS resistance in weed species. In this review, we present an overview of the latest approaches that could be used. We discuss the use of genomic and epigenomics techniques such as ATAC-seq and DAP-seq to identify transcription factors and cis-regulatory elements associated with resistance traits. Enzyme/protein structure prediction and docking analysis are discussed as an initial step for predicting herbicide binding affinities with key enzymes to identify candidates for subsequent in vitro validation. We also provide example analyses that can be deployed toward elucidating cross resistance and its regulatory patterns. Ultimately, our review provides important insights into the latest scientific advancements and potential directions for predicting and managing herbicide cross resistance in weeds. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

摘要

杂草抗药性的出现是现代农业的重大威胁。交叉抗性是一种现象,即对一种除草剂的抗性赋予了对另一种除草剂的抗性,由于其不可预测性,因此特别令人关注。非靶标部位(NTS)交叉抗性尤其难以预测,因为它源于编码酶的基因,这些酶不直接涉及除草剂靶标部位,并且可以影响多种除草剂。基因组学和结构生物学技术的最新进展为预测杂草物种中的 NTS 抗性提供了新的途径。在这篇综述中,我们介绍了可能使用的最新方法。我们讨论了使用基因组学和表观基因组学技术,如 ATAC-seq 和 DAP-seq,来鉴定与抗性特征相关的转录因子和顺式调控元件。我们还讨论了酶/蛋白质结构预测和对接分析,作为预测关键酶与除草剂结合亲和力的初始步骤,以鉴定后续体外验证的候选物。我们还提供了可以用于阐明交叉抗性及其调控模式的示例分析。最终,我们的综述提供了对抗性杂草交叉抗性的最新科学进展和潜在预测和管理方向的重要见解。©2023 作者。害虫管理科学由 John Wiley & Sons Ltd 代表化学工业协会出版。

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