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Joint full-waveform analysis of off-ground zero-offset ground penetrating radar and electromagnetic induction synthetic data for estimating soil electrical properties

机译:地面零偏移地面穿透雷达与电磁感应合成数据的联合全波形分析,用于估算土壤电特性

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摘要

High levels of resistance to spinosad, a macrocyclic lactone insecticide, have been reported previously in western flower thrips, Frankliniella occidentalis, an economically important insect pest of vegetables, fruit and ornamental crops. We have cloned the nicotinic acetylcholine receptor (nAChR) α6 subunit from F. occidentalis (Foα6) and compared the nucleotide sequence of Foα6 from susceptible and spinosad-resistant insect populations (MLFOM and R1S, respectively). A single nucleotide change has been identified in Foα6, resulting in the replacement of a glycine (G) residue in susceptible insects with a glutamic acid (E) in resistant insects. The resistance-associated mutation (G275E) is predicted to lie at the top of the third α-helical transmembrane domain of Foα6. Whilst there is no direct evidence identifying the location of the spinosad binding site, the analogous amino acid in the C. elegans glutamate-gated chloride channel lies in close proximity (4.4 Å) to the known binding site of ivermectin, another macrocyclic lactone pesticide. The functional consequences of the resistance-associated mutation have been examined in the human nAChR α7 subunit. Introduction of an analogous (A272E) mutation in α7 abolishes the modulatory effects of spinosad whilst having no significant effect upon activation by acetylcholine, consistent with spinosad having an allosteric mechanism of action. © 2012 International Society for Neurochemistry, J. Neurochem. (2012) 10.1111/ jnc.12029.
机译:以前已经在西方花蓟马,富兰克氏菌occidentalis(一种在蔬菜,水果和观赏作物上具有重要经济意义的害虫)中报道了对大环内酯杀虫剂多杀菌素(spinosad)的高水平抗药性。我们已经从西方烟草(Foα6)克隆了烟碱型乙酰胆碱受体(nAChR)α6亚基,并比较了易感和抗脊藻类昆虫种群(分别为MLFOM和R1S)的Foα6核苷酸序列。在Foα6中已鉴定出单个核苷酸变化,导致易感性昆虫中的甘氨酸(G)残基被抗性昆虫中的谷氨酸(E)取代。预计与抗性相关的突变(G275E)位于Foα6的第三个α螺旋跨膜结构域的顶部。尽管没有直接的证据可以确定多杀菌素结合位点的位置,但是秀丽隐杆线虫谷氨酸门控氯离子通道中的类似氨基酸与另一种大环内酯农药伊维菌素的已知结合位点非常接近(4.4埃)。已在人nAChRα7亚基中检测了与抗药性相关的突变的功能后果。在α7中引入类似的(A272E)突变消除了多杀菌素的调节作用,而对乙酰胆碱的活化没有明显影响,这与具有变构作用机制的多杀菌素一致。 ©2012国际神经化学学会,J。Neurochem。 (2012)10.1111 / jnc.12029。

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