Is There a Place for New Herbicides Targeting Photosynthetic Electron Transport?

IF 2.1 2区 农林科学 Q2 AGRONOMY
Weed Science Pub Date : 2024-04-01 DOI:10.1017/wsc.2024.20
Alyssa Twitty, Franck E. Dayan
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引用次数: 0

Abstract

Due to increased food demand, the need for use of herbicides is both necessary and on the rise. Several herbicide classes target photosynthetic electron transport: HRAC Groups 5, 6 and 22. These herbicides are used in large amounts in many different cropping systems to control several species of broadleaf and grass weeds. This article provides a comprehensive review of what these photosynthesis inhibitors are, how they are used and their mode of action. Presently, commercial herbicides only inhibit electron flow at two different sites photosystem II (PSII) and photosystem I (PSI). Those which inhibit electron flow at PSII block the movement of electrons down the electron transport chain, while those which inhibit at PSI accept electrons. Necrosis developing on the leaves of plants treated with PSII and PSI inhibitors is due to the accumulation of reactive oxygen species. Evolution of resistance, toxicity concerns, and other limitations of these herbicides call for the exploration of new chemistries which can be used to target this pathway.
以光合电子传递为目标的新型除草剂有用武之地吗?
由于粮食需求的增加,使用除草剂的必要性和需求量都在上升。有几类除草剂以光合电子传递为目标:HRAC 类别 5、6 和 22。这些除草剂被大量用于许多不同的种植系统中,以控制多种阔叶杂草和禾本科杂草。本文全面综述了这些光合作用抑制剂的作用、使用方法和作用模式。目前,商用除草剂只能抑制光系统 II(PSII)和光系统 I(PSI)两个不同部位的电子流。抑制 PSII 电子流的除草剂会阻止电子在电子传递链上的移动,而抑制 PSI 电子流的除草剂则会接受电子。使用 PSII 和 PSI 抑制剂的植物叶片坏死的原因是活性氧的积累。这些除草剂的抗药性演变、毒性问题和其他局限性要求人们探索可用于靶向这一途径的新化学物质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Weed Science
Weed Science 农林科学-农艺学
CiteScore
4.60
自引率
12.00%
发文量
64
审稿时长
12-24 weeks
期刊介绍: Weed Science publishes original research and scholarship in the form of peer-reviewed articles focused on fundamental research directly related to all aspects of weed science in agricultural systems. Topics for Weed Science include: - the biology and ecology of weeds in agricultural, forestry, aquatic, turf, recreational, rights-of-way and other settings, genetics of weeds - herbicide resistance, chemistry, biochemistry, physiology and molecular action of herbicides and plant growth regulators used to manage undesirable vegetation - ecology of cropping and other agricultural systems as they relate to weed management - biological and ecological aspects of weed control tools including biological agents, and herbicide resistant crops - effect of weed management on soil, air and water.
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