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Cross-resistance, mode of inheritance and stability of resistance to emamectin in Spodoptera litura (Lepidoptera: Noctuidae)

机译:斜纹夜蛾(Spodoptera litura)的交叉抗性,遗传方式和对埃莫菌素的抗性稳定性(鳞翅目:夜蛾科)

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BACKGROUND: Spodoptera litura (F.) is a cosmopolitan pest that has developed resistance to several insecticides. The aim of the present study was to establish whether an emamectin-selected (Ema-SEL) population could render cross-resistance to other insecticides, and to investigate the genetics of resistance. RESULTS: Bioassays at G1 gave resistance ratios (RRs) of 80-, 2980-, 3050- and 2800-fold for emamectin, abamectin, indoxacarb and acetamiprid, respectively, compared with a laboratory susceptible population Lab-PK. After three rounds of selection, resistance to emamectin in Ema-SEL increased significantly, with RRs of 730-fold and 13-fold compared with the Lab-PK and unselected (UNSEL) population respectively. Further studies revealed that three generations were required for a tenfold increase in resistance to emamectin. Resistance to abamectin, indoxacarb, acetamiprid and emamectin in UNSEL declined significantly compared with the field population at G1. Furthermore, selection with emamectin reduced resistance to abamectin, indoxacarb and acetamiprid on a par with UNSEL. Crosses between Ema-SEL and Lab-PK indicated autosomal and incomplete dominance of resistance. A direct test of a monogenic model and Land's method suggested that resistance to emamectin was controlled by more than one locus. CONCLUSION: Instability of resistance and lack of cross-resistance to other insecticides suggest that insecticides with different modes of action should be recommended to reduce emamectin selection pressure.
机译:背景:斜纹夜蛾(Spodoptera litura(F.))是一种世界性害虫,已对几种杀虫剂产生抗药性。本研究的目的是确定是否选择了一种埃马菌素(Ema-SEL)种群对其他杀虫剂具有交叉抗性,并研究了抗性的遗传学。结果:与实验室易感人群Lab-PK相比,在G1进行的生物测定得出的阿马菌素,阿巴菌素,茚虫威和扑热虫病的抗性比(RRs)分别为80、2980、3050和2800倍。经过三轮筛选后,与Lab-PK和未筛选(UNSEL)人群相比,Ema-SEL中对emamectin的耐药性显着增加,RR分别为730倍和13倍。进一步的研究表明,对埃马菌素的抗药性要提高十倍,需要三代人。与G1的田间种群相比,UNSEL中对阿维菌素,茚虫威,扑热息痛和Emamectin的抗药性明显下降。此外,使用emamectin进行选择可降低对阿维菌素,茚虫威和扑热息痛的抵抗力,与UNSEL相当。 Ema-SEL和Lab-PK之间的杂交表明抗性的常染色体和不完全优势。对单基因模型和Land方法的直接测试表明,对emamectin的抗性由一个以上的基因座控制。结论:对其他杀虫剂的抗药性不稳定和缺乏交叉抗药性,建议使用不同作用方式的杀虫剂以降低依莫菌素的选择压力。

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