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Effects of Entomopathogens on Mortality of Western Corn Rootworm (Coleoptera: Chrysomelidae) and Fitness Costs of Resistance to Cry3Bb1 Maize

机译:昆虫病原菌对西部玉米根虫死亡率和抗Cry3Bb1玉米适应性成本的影响

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摘要

Fitness costs can delay pest resistance to crops that produce insecticidal toxins derived from the bacterium Bacillus thuringiensis (Bt), and past research has found that entomopathogens impose fitness costs of Bt resistance. In addition, entomopathogens can be used for integrated pest management by providing biological control of pests. The western corn rootworm,Diabrotica virgifera virgifera LeConte (Coleoptera: Chrysomelidae), is a major pest of maize and is currently managed by planting of Bt maize. We tested whether entomopathogenic nematodes and fungi increased mortality of western corn rootworm and whether these entomopathogens increased fitness costs of resistance to Cry3Bb1 maize. We exposed western corn rootworm larvae to two species of nematodes, Heterorhabditis bacteriophora Poinar (Rhabditida: Heterorhabditidae) and Steinernema feltiae Filipjev (Rhabditida: Steinernematidae), and to two species of fungi, Beauveria bassiana (Balsamo) Vuillemin (Hypocreales: Cordycipitaceae) (strain GHA) and Metarhizium brunneum (Metschnikoff) Sorokin (Hypocreales: Clavicipitaceae) (strain F52) in two assay types, namely, seedling mat and small cup. Larval mortality increased with the concentration of H. bacteriophora and S. feltiae in the small cup assay, and with the exception of S. feltiae and B. bassiana in the seedling mat assay, mortality from entomopathogens was significantly greater than zero for the remaining entomopathogens in both assays. However, no fitness costs were observed in either assay type for any entomopathogen. Increased mortality of western corn rootworm larvae caused by these entomopathogens supports their potential use in biological control; however, the lack of fitness costs suggests that entomopathogens will not delay the evolution of Bt resistance in western corn rootworm.
机译:适应成本可能会延缓害虫对产生源自苏云金芽孢杆菌(Bt)细菌的杀虫毒素的农作物的抗药性,而过去的研究发现,昆虫病原菌会导致抗Bt的适应性成本。另外,昆虫病原体可通过提供有害生物的生物防治而用于综合有害生物管理。西部玉米根虫Diabrotica virgifera virgifera LeConte(鞘翅目:菊科)是玉米的主要害虫,目前通过种植Bt玉米进行管理。我们测试了昆虫病原线虫和真菌是否增加了西部玉米根虫的死亡率,以及这些昆虫病原体是否增加了对Cry3Bb1玉米抗性的适应性成本。我们将西部玉米根虫幼虫暴露于两种线虫,即细菌异种杂菌Poinar(Rhabditida:Heterorhahabditidae)和Steinernema feeliae Filipjev(Rhabditida:Steinernematidae),以及两种真菌白僵菌(Beauveria bassianaminale)(Bals) GHA)和Brutneumium brunneum(Metschnikoff)Sorokin(Hypocreales:Clavicipitaceae)(菌株F52)有两种检测类型,分别是幼苗垫和小杯。在小杯试验中,幼虫死亡率随H. bacteriophora和S. feeliae浓度的增加而增加,除了苗垫试验中S. feeliae和B. bassiana以外,其余昆虫病原体中昆虫病原体的死亡率明显大于零。在两种测定中。但是,对于任何昆虫病原体,在任何一种检测类型中均未观察到适应性费用。这些昆虫病原体引起的西部玉米根虫幼虫死亡率增加,支持了它们在生物防治中的潜在用途。然而,缺乏健身成本表明昆虫病原体不会延迟西部玉米根虫对Bt抗性的进化。

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