首页> 外文期刊>Chilean Journal of Agricultural Research >Resistance level and target-site mechanism to fenoxaprop- p -ethyl in Beckmannia syzigachne (Steud.) Fernald populations from China
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Resistance level and target-site mechanism to fenoxaprop- p -ethyl in Beckmannia syzigachne (Steud.) Fernald populations from China

机译:中国Beckmannia syzigachne(Steud。)Fernald种群对fenoxaprop-p-ethyl的抗性水平和目标位点机制

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Beckmannia syzigachne (Steud.) Fernald is one of the main grass weeds severely harming wheat (Triticum aestivum L.) production in rice-wheat areas in China. Fenoxaprop-p-ethyl is the main herbicide used to selectively control grass weed in China. Beckmannia syzigachne has evolved resistance to fenoxaprop-p-ethyl due to continuous application. To investigate fenoxaprop-p-ethyl resistant level and mechanism in B. syzigachne in a portion of the rice-wheat area in China, samples from 31 field populations were collected and treated with fenoxaprop-p-ethyl. The results show that 10 of the 31 tested field populations evolved a high level of resistance to fenoxaprop-p-ethyl. A portion of the acetyl-coenzyme A carboxylase (ACCase) gene was amplified, sequenced and aligned. The known Ile-1781-Leu, Ile-1781-Val, Ile-2041-Asn, Asp-2078-Gly and Gly-2096-Ala mutations were identified in five resistant populations. None of the known resistant substitutions was identified in the other five resistant populations, which means the resistance to fenoxaprop-p-ethyl in these populations is likely endowed by non-target-site resistance mechanism.
机译:Beckmannia syzigachne(Steud。)Fernald是严重危害中国稻麦地区小麦(Triticum aestivum L.)生产的主要杂草之一。非诺沙丙酯对乙基是中国用于选择性防治草杂草的主要除草剂。由于连续施用,德国贝克曼(Beckmannia syzigachne)已发展出对非诺沙普-对乙基的抗药性。为了调查中国部分稻麦地区的锡麦芽孢杆菌中的抗氧磷丙酯对乙基水平和作用机理,收集了31个田间种群的样品并进行了抗氧磷丙酯对乙基处理。结果表明,在31个测试田间种群中有10个对芬诺沙普-对-乙基具有高水平的抗性。乙酰辅酶A羧化酶(ACCase)基因的一部分被扩增,测序和比对。在五个耐药人群中鉴定出已知的Ile-1781-Leu,Ile-1781-Val,Ile-2041-Asn,Asp-2078-Gly和Gly-2096-Ala突变。在其他五个耐药人群中未发现任何已知的耐药替代物,这意味着这些人群中对非诺沙普-对-乙基的耐药性很可能是由非目标位点耐药机制赋予的。

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