Insecticidal Traits of Variants in a Genotypically Diverse Natural Isolate of Anticarsia Gemmatalis Multiple Nucleopolyhedrovirus (AgMNPV)
- PMID: 37515212
- PMCID: PMC10386246
- DOI: 10.3390/v15071526
Insecticidal Traits of Variants in a Genotypically Diverse Natural Isolate of Anticarsia Gemmatalis Multiple Nucleopolyhedrovirus (AgMNPV)
Abstract
Outbreaks of Anticarsia gemmatalis (Hübner, 1818) (Lepidoptera: Erebidae), a major pest of soybean, can be controlled below economic thresholds with methods that do not involve the application of synthetic insecticides. Formulations based on natural isolates of the Anticarsia gemmatalis multiple nucleopolyhedrovirus (AgMNPV) (Baculoviridae: Alphabaculovirus) played a significant role in integrated pest management programs in the early 2000s, but a new generation of chemical insecticides and transgenic soybean have displaced AgMNPV-based products over the past decade. However, the marked genotypic variability present among and within alphabaculovirus isolates suggests that highly insecticidal genotypic variants can be isolated and used to reduce virus production costs or overcome isolate-dependent host resistance. This study aimed to select novel variants of AgMNPV with suitable insecticidal traits that could complement the existing AgMNPV active ingredients. Three distinct AgMNPV isolates were compared using their restriction endonuclease profile and in terms of their occlusion body (OB) pathogenicity. One isolate was selected (AgABB51) from which eighteen genotypic variants were plaque purified and characterized in terms of their insecticidal properties. The five most pathogenic variants varied in OB pathogenicity, although none of them was faster-killing or had higher OB production characteristics than the wild-type isolate. We conclude that the AgABB51 wild-type isolates appear to be genotypically structured for fast speed of kill and high OB production, both of which would favor horizontal transmission. Interactions among the component variants are likely to influence this insecticidal phenotype.
Keywords: Baculoviridae; bioinsecticide; genotypic variant; occlusion body production; pathogenicity; virulence.
Conflict of interest statement
The authors declare no conflict of interest. The funders had no role in the design of the study; in the collection, analyses, or interpretation of data; in the writing of the manuscript; or in the decision to publish the results.
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References
-
- Moscardi F., de Carvalho R.C.Z. Consumo e utilização de folhas da soja por Anticarsia gemmatalis Hüb. (Lepidoptera: Noctuidae) infectada, em diferentes estádios larvais, por seu vírus de poliedrose nuclear. An.-Soc. Entomol. Bras. 1993;22:267–280. doi: 10.37486/0301-8059.v22i2.847. - DOI
-
- Bayer Crop Science Bayer-Crop Pests Compendium-Anticarsia Gemmatalis by Bayer Crop Science AG. [(accessed on 24 May 2023)]. Available online: https://www.agriculture-xprt.com/products/bayer-anticarsia-gemmatalis-61....
-
- Musser F.R., Catchot A.L., Conley S.P., Davis J.A., Difonzo C., Greene J.K., Lorenz G.M., Owens D., Reisig D.D., Roberts P., et al. 2019 Soybean Insect Losses in the United States. Midsouth Entomol. 2020;13:1–23.
-
- Fernandes F.O., Abreu J.Á.D., Christ L.M., Rosa A.P.S.A. Da Insecticides Management Used in Soybean for the Control of Anticarsia gemmatalis (Hübner, 1818) (Lepidoptera: Eribidae) J. Agric. Sci. 2018;10:223. doi: 10.5539/jas.v10n11p223. - DOI
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