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首页> 外文期刊>Pest Management Science >Cross-resistance patterns to ACCase-inhibiting herbicides conferred by mutant ACCase isoforms in Alopecurus myosuroides Huds. (black-grass), re-examined at the recommended herbicide field rate
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Cross-resistance patterns to ACCase-inhibiting herbicides conferred by mutant ACCase isoforms in Alopecurus myosuroides Huds. (black-grass), re-examined at the recommended herbicide field rate

机译:突变ACCase同工型在Aurocurus myosuroides Huds中对ACCase抑制除草剂的交叉抗性模式。 (黑草),以推荐的除草剂田间速率重新检查

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BACKGROUND: Target-site-based resistance to acetyl-CoA carboxylase (ACCase) inhibitors in Alopecurus myosuroides Huds. is essentially due to five substitutions (Isoleucine-1781-Leucine, Tryptophan-2027-Cysteine, Isoleucine-2041-Asparagine, Aspartate-2078-Glycine, Glycine-2096-Alanine). Recent studies suggested that cross-resistance patterns associated with each mutation using a seed-based bioassay may not accurately reflect field resistance. The authors aimed to connect the presence of mutant ACCase isoform(s) in A. myosuroides with resistance to five ACCase inhibitors (fenoxaprop, clodinafop, haloxyfop, cycloxydim, clethodim) sprayed at the recommended field rate. RESULTS: Results from spraying experiments and from seed-based bioassays were consistent for all mutant isoforms except the most widespread, Leucine-1781. In spraying experiments, Leucine-1781 ACCase conferred resistance to clodinafop and haloxyfop. Some plants containing Leucine-1781 or Alanine-2096 ACCase, but not all, were also resistant to clethodim. CONCLUSION: Leucine-1781, Cysteine-2027, Asparagine-2041 and Alanine-2096 ACCases confer resistance to fenoxaprop, clodinafop and haloxyfop at field rates. Leucine-1781 ACCase also confers resistance to cycloxydim at field rate. Glycine-2078 ACCase confers resistance to all five herbicides at field rates. Only Glycine-2078 ACCase confers clethodim resistance under optimal application conditions. It may be that Leucine-1781 and Alanine-2096 ACCases may also confer resistance to clethodim in the field if the conditions are not optimal for herbicide efficacy, or at reduced clethodim field rates.
机译:背景:基于靶点的对Aurocurus myosuroides Huds中乙酰辅酶A羧化酶(ACCase)抑制剂的抗性。基本上是由于五个取代(异亮氨酸1781-亮氨酸,色氨酸2027-半胱氨酸,异亮氨酸2041-天冬酰胺,天冬氨酸2078-甘氨酸,甘氨酸2096-丙氨酸)引起的。最近的研究表明,使用基于种子的生物测定法与每个突变相关的交叉耐药模式可能无法准确反映出田间耐药性。作者旨在将突变型ACCase同工型在糖尿曲霉中的存在与对以推荐的田间速率喷洒的五种ACCase抑制剂(fenoxaprop,clodinafop,haloxyfop,cycloxydim,clethodim)的抗性联系起来。结果:除最广泛的亮氨酸-1781外,所有突变亚型的喷雾实验和基于种子的生物测定结果均一致。在喷洒实验中,亮氨酸-1781 ACCase赋予了对克洛那非和haloxyfop的抗性。一些含有亮氨酸1781或丙氨酸-2096 ACCase的植物,但不是全部,都对杀虫灵具有抗性。结论:亮氨酸1781,半胱氨酸2027,天冬酰胺-2041和丙氨酸-2096 ACCases在田间施用率下对芬非卡普,氯丁纳福和氟草铵具有抗性。 Leucine-1781 ACCase还可在田间速率下赋予对环氧嘧啶的抗性。甘氨酸2078 ACCase在田间施用率下赋予所有五种除草剂抗性。在最佳应用条件下,只有Glycine-2078 ACCase赋予了ethethodim耐药性。如果条件不是除草剂功效的最佳条件,或者在降低的草定地田率下,Leucine-1781和Alanine-2096 ACCases也可能在田间赋予对杀草定的抗药性。

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