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Metabolism-Based Herbicide Resistance and Cross-Resistance in Crop Weeds: A Threat to Herbicide Sustainability and Global Crop Production

机译:作物杂草中基于代谢的除草剂抗性和交叉抗性:对除草剂可持续性和全球作物生产的威胁

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摘要

Weedy plant species that have evolved resistance to herbicides due to enhanced metabolic capacity to detoxify herbicides (metabolic resistance) are a major issue. Metabolic herbicide resistance in weedy plant species first became evident in the 1980s in Australia (in Lolium rigidum) and the United Kingdom (in Alopecurus myosuroides) and is now increasingly recognized in several crop-weed species as a looming threat to herbicide sustainability and thus world crop production. Metabolic resistance often confers resistance to herbicides of different chemical groups and sites of action and can extend to new herbicide(s). Cytochrome P450 monooxygenase, glycosyl transferase, and glutathione S-transferase are often implicated in herbicide metabolic resistance. However, precise biochemical and molecular genetic elucidation of metabolic resistance had been stalled until recently. Complex cytochrome P450 superfamilies, high genetic diversity in metabolic resistant weedy plant species (especially cross-pollinated species), and the complexity of genetic control of metabolic resistance have all been barriers to advances in understanding metabolic herbicide resistance. However, next-generation sequencing technologies and transcriptome-wide gene expression profiling are now revealing the genes endowing metabolic herbicide resistance in plants. This Update presents an historical review to current understanding of metabolic herbicide resistance evolution in weedy plant species.
机译:由于增强的除草剂解毒能力(代谢抗性)而对除草剂产生抗性的杂草植物物种是一个主要问题。杂草植物物种对代谢性除草剂的抗性首先在1980年代在澳大利亚(硬质黑麦草)和英国(在Aurocurus myosuroides)中变得很明显,现在在几种农作物杂草中越来越多地被认为是对除草剂可持续性乃至世界的迫在眉睫的威胁。作物生产。代谢抗性通常赋予对不同化学基团和作用部位的除草剂抗性,并且可以扩展到新的除草剂。细胞色素P450单加氧酶,糖基转移酶和谷胱甘肽S-转移酶通常与除草剂的代谢抗性有关。然而,直到最近,对代谢抗性的精确生化和分子遗传学阐明仍处于停滞状态。复杂的细胞色素P450超家族,抗代谢杂草植物物种(尤其是异花授粉物种)的高遗传多样性以及对代谢抗性的遗传控制的复杂性,都是理解代谢性除草剂抗性的障碍。然而,下一代测序技术和转录组全基因表达谱分析现在揭示了赋予植物新陈代谢除草剂抗性的基因。此更新为当前对杂草植物物种对代谢性除草剂抗性进化的理解提供了历史回顾。

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