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首页> 外文期刊>Pesticide Biochemistry and Physiology >Investigation of resistance levels and mechanisms to nicosulfuron conferred by non-target-site mechanisms in large crabgrass (Digitaria sanguinalis L.) from China
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Investigation of resistance levels and mechanisms to nicosulfuron conferred by non-target-site mechanisms in large crabgrass (Digitaria sanguinalis L.) from China

机译:来自中国大蟹(Digitaria Sanguinalis L.)的非靶部位机制赋予效力水平和机制的抵抗水平和机制

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摘要

Large crabgrass is a major grass weed widely distributed across China. This weed infests maize fields and has evolved resistance to the acetolactate synthase (ALS)-inhibiting herbicide nicosulfuron due to continuous and intensive use. In this study, a total of 25 out of 26 large crabgrass populations collected from maize field demonstrated resistance to nicosulfuron. Amino acid modifications in ALS known to confer resistance to ALS-inhibiting herbicides in other weeds, were not found in the 9 tested resistant populations. The P450 inhibitor malathion significantly reversed resistance to nicosulfuron in 3 tested populations, indicating one or more P450s may be involved. Nicosulfuron was metabolized more rapidly in one resistant large crabgrass population than in a susceptible biotype. This demonstrates that the metabolic resistance mechanisms involving one or more P450s may be responsible for large crabgrass resistance to nicosulfuron in this biotype. (C) 2016 Elsevier Inc. All rights reserved.
机译:大蟹是杂草广泛分布在中国的主要草地。这种杂草是玉米田野,并且由于连续和密集使用而导致除草剂尼科膦酸含量的抗性。在这项研究中,从玉米场收集的26个大型蟹肉种群中共有25个,表现出对Nicosulfuron的抗性。在9个测试的抗性群体中未发现已知在其他杂草中赋予抑制ALS抑制除草剂的ALS的氨基酸修饰。 P450抑制剂Malathion在3个测试的群体中显着逆转到尼科核血清的抗性,表明可以涉及一种或多种P450。尼科磺隆在一个抗性大蟹群体中更快地代谢而不是易感生物型。这表明涉及一种或多种P450S的代谢抗性机制可能是在这种生物型中对尼科核糖的大型蟹肉抗性。 (c)2016年Elsevier Inc.保留所有权利。

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