Pest Management Science (2020) 76, 4029-4035

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Eduardo P. Machado, Gerson L. dos S. Rodrigues Junior, Junior C. Somavilla, Fábio M. Führ, Stefan L. Zago, Luiz H. Marques, Antonio C. Santos, Timothy Nowatzki, Mark L. Dahmer, Celso Omoto and Oderlei Bernardi (2020)
Survival and development of Spodoptera eridania, Spodoptera cosmioides and Spodoptera albula (Lepidoptera: Noctuidae) on genetically-modified soybean expressing Cry1Ac and Cry1F proteins
Pest Management Science 76 (12), 4029-4035
Abstract:
BACKGROUND
Spodoptera eridania (Stoll), S. cosmioides (Walker) and S. albula (Walker) (Lepidoptera: Noctuidae) are considered secondary pests of soybean in South America. The genetically-modified soybean DAS-444Ø6-6 × DAS-81419-2 with tolerance to 2,4-dichlorophenoxyacetic acid (2,4-D), glyphosate and ammonium glufosinate herbicides (event DAS-444Ø6-6) and insect-resistance due to expression of Cry1Ac and Cry1F Bt proteins (event DAS-81419-2) may provide a potential tool for integrated pest management (IPM) of these species in soybean fields. Based on this, we conducted bioassays to evaluate the survival and development of S. eridania, S. cosmioides and S. albula fed on Cry1Ac/Cry1F-soybean leaf tissue.
RESULTS
Spodoptera eridania and S. cosmioides fed on Cry1Ac/Cry1F-soybean showed longer developmental time, lower larval and egg to adult survival compared to those fed on non-Bt soybean, reducing the population growth of these species. Spodoptera albula also had lower larval survival and number of insects that reached adulthood on Cry1Ac/Cry1F-soybean. However, no significant effects of Cry1Ac/Cry1F-soybean on population growth parameters were detected in this species.
CONCLUSIONS
Soybean with stacked events DAS-444Ø6-6 × DAS-81419-2 expressing Cry1Ac/Cry1F Bt proteins provide population suppression of S. eridania and S. cosmioides. However, this Bt soybean had minimal effects on S. albula, and is unlikely to have negative population-level effects on this species. It is expected that under field conditions, other control tactics must be integrated with Cry1Ac/Cry1F-soybean for the management of these Spodoptera species.
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Full text of article
Database assignments for author(s): Celso Omoto, Oderlei Bernardi

Research topic(s) for pests/diseases/weeds:
biocontrol - natural enemies
Research topic(s) for beneficials or antagonists:
general biology - morphology - evolution


Pest and/or beneficial records:

Beneficial Pest/Disease/Weed Crop/Product Country Quarant.


Spodoptera eridania Soybean (Glycine max) Brazil (south)
Spodoptera eridania Soybean (Glycine max) Brazil (NW)
Spodoptera cosmioides Soybean (Glycine max) Brazil (south)
Spodoptera albula Soybean (Glycine max) Brazil (NW)
Bacillus thuringiensis Cry1A-toxin (entomopathogen) Spodoptera eridania
Bacillus thuringiensis Cry1A-toxin (entomopathogen) Spodoptera cosmioides
Bacillus thuringiensis Cry1A-toxin (entomopathogen) Spodoptera albula
Bacillus thuringiensis Cry1F-toxin (entomopathogen) Spodoptera eridania
Bacillus thuringiensis Cry1F-toxin (entomopathogen) Spodoptera cosmioides
Bacillus thuringiensis Cry1F-toxin (entomopathogen) Spodoptera albula