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首页> 外文期刊>Pesticide Biochemistry and Physiology >Molecular basis of ALS- and/or ACCase-inhibitor resistance in shortawn foxtail (Alopecurus aequalis Sobol.)
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Molecular basis of ALS- and/or ACCase-inhibitor resistance in shortawn foxtail (Alopecurus aequalis Sobol.)

机译:短尾狐尾草(Alopecurus aequalis Sobol。)中ALS和/或ACCase抑制剂抗性的分子基础。

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Alopecurus aequalis, a predominant weed species in wheat and oilseed rape fields, can no longer be controlled by mesosulfuron-methyl application after continuous use over several years. Based on doseresponse studies, the putative resistant populations, JTJY-1 and JHHZ-1, were found to be resistant to mesosulfuron-methyl, with resistance index values of 5.5 and 14, respectively. Sensitivity assays of the mesosulfuron-methyl-resistant populations to other herbicides revealed that the JTJY-1 population had moderate or high cross resistance to sulfonylureas (SUs) and triazolopyrimidines (TPs), but displayed a low level resistance to imidazolinones (IMIs). JTJY-1 also had high multi-resistance to ACCase inhibitors, but remained susceptible to photosystem II inhibitors. The JHHZ-1 population was resistant to all ALS inhibitors tested, but was sensitive to ACCase inhibitors and photosystem II inhibitors. To clarify the molecular basis of resistance in JTJY-1 and JHHZ-1 population, the ALS and ACCase gene were sequenced. Two ALS mutations (Pro-197-Thr or Trp-574-Leu) were detected in the mesosulfuron-methyl-resistant plants. The ACCase gene analysis revealed that the resistant JTJY-1 population had an Ile-1781-Leu mutation. Furthermore, the presence of two different target site resistance (TSR) mechanisms (ALS and ACCase mutations) existing simultaneously in individual A. aequalis was firstly documented in the presented study. (C) 2014 Elsevier Inc. All rights reserved.
机译:麦草和油菜田中的主要杂草种类秃头草(Alopecurus aequalis)在连续使用数年后,不再可以通过甲基磺隆磺隆的施用来控制。根据剂量反应研究,推定的耐药人群JTJY-1和JHHZ-1对甲基磺草隆具有耐药性,耐药指数分别为5.5和14。对耐甲基磺草隆的种群对其他除草剂的敏感性分析表明,JTJY-1种群对磺酰脲类(SUs)和三唑并嘧啶类(TPs)具有中等或较高的交叉抗性,但对咪唑啉酮类(IMIs)的抗性较低。 JTJY-1对ACCase抑制剂也具有较高的多抗性,但仍易受光系统II抑制剂的影响。 JHHZ-1群体对所有测试的ALS抑制剂均具有抗性,但对ACCase抑制剂和光系统II抑制剂敏感。为了阐明JTJY-1和JHHZ-1人群中抗药性的分子基础,对ALS和ACCase基因进行了测序。在对甲磺隆的甲基抗性植物中检测到两个ALS突变(Pro-197-Thr或Trp-574-Leu)。 ACCase基因分析表明,抗性JTJY-1群体具有Ile-1781-Leu突变。此外,在本研究中首次记录了同时存在于个体水母中的两种不同的靶位点抗性(TSR)机制(ALS和ACCase突变)的存在。 (C)2014 Elsevier Inc.保留所有权利。

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