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新型 W2027L 突变和非靶标抗性对法国种群中乙酰辅酶 A 羧化酶抑制剂类除草剂的影响。

Impact of a Novel W2027L Mutation and Non-Target Site Resistance on Acetyl-CoA Carboxylase-Inhibiting Herbicides in a French Population.

机构信息

Herbicide Bioscience, Jealott's Hill International Research Centre, Syngenta, Bracknell RG42 6EY, UK.

出版信息

Genes (Basel). 2021 Nov 21;12(11):1838. doi: 10.3390/genes12111838.

Abstract

Herbicides that inhibit acetyl-CoA carboxylase (ACCase) are among the few remaining options for the post-emergence control of species in small grain cereal crops. Here, we determined the mechanism of resistance to ACCase herbicides in a population (HGR) from France. A combined biological and molecular approach detected a novel W2027L ACCase mutation that affects aryloxyphenoxypropionate (FOP) but not cyclohexanedione (DIM) or phenylpyraxoline (DEN) subclasses of ACCase herbicides. Both the wild-type tryptophan and mutant leucine 2027-ACCase alleles could be positively detected in a single DNA-based-derived polymorphic amplified cleaved sequence (dPACS) assay that contained the targeted PCR product and a cocktail of two discriminating restriction enzymes. Additionally, we identified three well-characterised I1781L, I2041T, and D2078G ACCase target site resistance mutations as well as non-target site resistance in HGR. The non-target site component endowed high levels of resistance to FOP herbicides whilst partially impacting on the efficacy of pinoxaden and cycloxydim. This study adequately assessed the contribution of the W2027L mutation and non-target site mechanism in conferring resistance to ACCase herbicides in HGR. It also highlights the versatility and robustness of the dPACS method to simultaneously identify different resistance-causing alleles at a single ACCase codon.

摘要

乙酰辅酶 A 羧化酶(ACCase)抑制剂除草剂是少数几种可用于小粒谷类作物苗后防治 种的选择之一。在这里,我们确定了来自法国的 种群对 ACCase 除草剂产生抗性的机制。一种结合生物学和分子的方法检测到一种新的 W2027L ACCase 突变,该突变影响了芳氧苯氧丙酸(FOP)但不影响环己二酮(DIM)或苯基吡唑啉(DEN)类 ACCase 除草剂。野生型色氨酸和突变型亮氨酸 2027-ACCase 等位基因都可以在单个基于 DNA 的衍生多态性扩增切割序列(dPACS)检测中被正向检测到,该检测包含了靶向 PCR 产物和两种有区别的限制性内切酶的混合物。此外,我们还鉴定出三种特征明确的 I1781L、I2041T 和 D2078G ACCase 靶位抗性突变以及 HGR 中的非靶位抗性。非靶位元件赋予了对 FOP 除草剂的高水平抗性,同时部分影响了吡氟禾草灵和环丙氧草醚的功效。本研究充分评估了 W2027L 突变和非靶位机制在赋予 HGR 对 ACCase 除草剂抗性方面的贡献。它还突出了 dPACS 方法的多功能性和稳健性,可同时在单个 ACCase 密码子处鉴定出不同的抗性等位基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3afa/8620607/c199c7a48c84/genes-12-01838-g001.jpg

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