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A Novel Binary Mixture of Helicoverpa armigera Single Nucleopolyhedrovirus Genotypic Variants Has Improved Insecticidal Characteristics for Control of Cotton Bollworms

机译:棉铃虫单核多角体病毒基因型变异的新型二元混合物具有改进的棉铃虫杀虫特性。

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摘要

The genotypic diversity of two Spanish isolates of Helicoverpa armigera single nucleopolyhedrovirus (HearSNPV) was evaluated with the aim of identifying mixtures of genotypes with improved insecticidal characteristics for control of the cotton bollworm. Two genotypic variants, HearSP1A and HearSP1B, were cloned in vitro from the most pathogenic wild-type isolate of the Iberian Peninsula, HearSNPV-SP1 (HearSP1-wt). Similarly, six genotypic variants (HearLB1 to -6) were obtained by endpoint dilution from larvae collected from cotton crops in southern Spain that died from virus disease during laboratory rearing. Variants differed significantly in their insecticidal properties, pathogenicity, speed of kill, and occlusion body (OB) production (OBs/larva). HearSP1B was ∼3-fold more pathogenic than HearSP1-wt and the other variants. HearLB1, HearLB2, HeaLB5, and HearLB6 were the fastest-killing variants. Moreover, although highly virulent, HearLB1, HearLB4, and HearLB5 produced more OBs/larva than did the other variants. The co-occluded HearSP1B:LB6 mixture at a 1:1 proportion was 1.7- to 2.8-fold more pathogenic than any single variant and other mixtures tested and also killed larvae as fast as the most virulent genotypes. Serial passage resulted in modified proportions of the component variants of the HearSP1B:LB6 co-occluded mixture, suggesting that transmissibility could be further improved by this process. We conclude that the improved insecticidal phenotype of the HearSP1B:LB6 co-occluded mixture underlines the utility of the genotypic variant dissection and reassociation approach for the development of effective virus-based insecticides.
机译:评价了西班牙棉铃虫单核多角体病毒(HearSNPV)的两个西班牙分离株的基因型多样性,目的是鉴定具有改进的杀虫特性的基因型混合物以控制棉铃虫。从伊比利亚半岛最具致病性的野生型分离株HearSNPV-SP1(HearSP1-wt)体外克隆了两个基因型变体HearSP1A和HearSP1B。同样,通过终点稀释从西班牙南部棉农收集的幼虫中稀释得到六种基因型变体(HearLB1至-6),这些幼虫在实验室饲养期间死于病​​毒病。变体在杀虫特性,致病性,杀灭速度和闭塞体(OB)产生(OB /幼虫)方面有显着差异。 HearSP1B的致病性是HearSP1-wt和其他变体的约3倍。 HearLB1,HearLB2,HeaLB5和HearLB6是杀死速度最快的变体。此外,尽管具有高毒力,但HearLB1,HearLB4和HearLB5比其他变体产生的OB /幼虫更多。以1:1的比例共混的HearSP1B:LB6混合物的致病性比任何单一变体和其他测试混合物高1.7至2.8倍,并且杀死幼虫的速度与最具毒性的基因型一样快。连续传代导致HearSP1B:LB6共混混合物组分变体比例的改变,这表明该方法可以进一步提高透射率。我们得出的结论是,HearSP1B:LB6共混混合物的改良杀虫表型强调了基因型变异解剖和重新关联方法在开发基于病毒的有效杀虫剂中的实用性。

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