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Measuring Rates of Herbicide Metabolism in Dicot Weeds with an Excised Leaf Assay

机译:切除叶测定法测定双子叶植物杂草中除草剂代谢率

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摘要

In order to isolate and accurately determine rates of herbicide metabolism in an obligate-outcrossing dicot weed, waterhemp (Amaranthus tuberculatus), we developed an excised leaf assay combined with a vegetative cloning strategy to normalize herbicide uptake and remove translocation as contributing factors in herbicide-resistant (R) and –sensitive (S) waterhemp populations. Biokinetic analyses of organic pesticides in plants typically include the determination of uptake, translocation (delivery to the target site), metabolic fate, and interactions with the target site. Herbicide metabolism is an important parameter to measure in herbicide-resistant weeds and herbicide-tolerant crops, and is typically accomplished with whole-plant tests using radiolabeled herbicides. However, one difficulty with interpreting biokinetic parameters derived from whole-plant methods is that translocation is often affected by rates of herbicide metabolism, since polar metabolites are usually not mobile within the plant following herbicide detoxification reactions. Advantages of the protocol described in this manuscript include reproducible, accurate, and rapid determination of herbicide degradation rates in R and S populations, a substantial decrease in the amount of radiolabeled herbicide consumed, a large reduction in radiolabeled plant materials requiring further handling and disposal, and the ability to perform radiolabeled herbicide experiments in the lab or growth chamber instead of a greenhouse. As herbicide resistance continues to develop and spread in dicot weed populations worldwide, the excised leaf assay method developed and described herein will provide an invaluable technique for investigating non-target site-based resistance due to enhanced rates of herbicide metabolism and detoxification.
机译:为了分离和准确测定专性交配的双子叶杂草waterhemp(Amaranthus tuberculatus)中除草剂的代谢速率,我们开发了一种经切除的叶片测定法以及一种无性系克隆策略,以使除草剂吸收归一化并消除易位,这是除草剂-抗性(R)和-敏感(S)的水大麻种群。植物中有机农药的生物动力学分析通常包括吸收,易位(传递至目标部位),代谢命运以及与目标部位的相互作用的测定。除草剂代谢是衡量抗除草剂杂草和耐除草剂作物的重要参数,通常通过使用放射性标记除草剂的全厂试验来完成。然而,解释源自全植物方法的生物动力学参数的一个困难是易位通常受除草剂代谢速率的影响,因为除草剂解毒反应后,极性代谢产物通常在植物内不移动。本手稿中所述方案的优点包括:可重复,准确,快速地确定R和S种群中除草剂的降解速率,放射性标记除草剂的消耗量大大减少,放射性标记植物材料的大量减少需要进一步处理和处置,以及在实验室或生长室(而不是温室)中进行放射性标记除草剂实验的能力。随着除草剂抗性的持续发展并在全世界双子叶植物种群中传播,本文中开发和描述的切叶试验方法将为研究基于非目标位点的抗性提供宝贵的技术,因为除草剂代谢和解毒的速率提高了。

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