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首页> 外文期刊>Irish Journal of Agricultural and Food Research >First evidence of retained sexual capacity and survival in the pyrethroid resistant Sitobion avenae (F.) (Hemiptera: Aphididae) SA3 super-clone following exposure to a pyrethroid at current field-rate
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First evidence of retained sexual capacity and survival in the pyrethroid resistant Sitobion avenae (F.) (Hemiptera: Aphididae) SA3 super-clone following exposure to a pyrethroid at current field-rate

机译:在目前的场速下暴露于拟除虫菊酯的拟除虫菊酯抗性Sitobion avenae(F。)(半翅目:蚜虫)SA3超级克隆中保留性能力和存活的第一个证据

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The grain aphid Sitobion avenae is a prolific pest of cereal crops worldwide, controlled effectively with pyrethroid insecticides. However, the classic knock down resistance (kdr) mutation, L1014F on the S. avenae sodium channel gene, has been identified as the cause of the recently observed heterozygous (kdr-SR) resistance in the SA3 grain aphid super-clone. Results indicate that the kdr-SR SA3 clone can survive pyrethroid exposure above twice the normal field rate, continuing to reproduce thereafter. Additionally, the SA3 clone was found to be capable of producing sexual oviparous morphs, able to lay eggs following pyrethroid exposure. This demonstrates that possession of the L1014F mutation does not preclude the capacity to produce sexual morphs. This makes the adoption of an effective resistance management strategy imperative, within a wider integrated pest management (IPM) approach to control grain aphid.
机译:谷物蚜虫Sitobion avenae是全世界谷物作物的多产害虫,可通过拟除虫菊酯类杀虫剂有效控制。但是,经典的敲低抗性(kdr)突变,在燕麦葡萄球菌钠通道基因上的L1014F,已被确定为SA3谷物蚜虫超级克隆中最近观察到的杂合(kdr-SR)抗性的原因。结果表明,kdr-SR SA3克隆在拟除虫菊酯暴露条件下可承受正常场频两倍以上的存活,此后继续繁殖。此外,发现SA3克隆能够产生有性卵形,在拟除虫菊酯暴露后能够产卵。这表明拥有L1014F突变并不排除产生性形态的能力。这使得在更广泛的病虫害综合防治方法(IPM)中采用有效的抗药性管理策略势在必行。

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