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Yield analysis and corn earworm feeding in Bt and non-Bt corn hybrids across diverse locations
by
Heiniger, Ryan
, Reisig, Dominic
in
Agricultural production
/ Animals
/ Bacillus thuringiensis Toxins
/ Bacterial Proteins
/ Corn
/ Corn industry
/ Cotton
/ Cotton industry
/ Crop yield
/ Crop yields
/ Endotoxins
/ Entomology
/ FIELD AND FORAGE CROPS
/ Genetically modified crops
/ Helicoverpa zea
/ Hemolysin Proteins
/ Herbivory
/ Hybrids
/ Larva - growth & development
/ Moths - growth & development
/ non-Bt refuge
/ Plant breeding
/ Plants, Genetically Modified
/ resistance management
/ seed industry
/ seeds
/ Soil sciences
/ Southeastern United States
/ Toxins
/ Vegetables
/ yield stability
/ Zea mays
/ Zea mays - genetics
2024
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Yield analysis and corn earworm feeding in Bt and non-Bt corn hybrids across diverse locations
by
Heiniger, Ryan
, Reisig, Dominic
in
Agricultural production
/ Animals
/ Bacillus thuringiensis Toxins
/ Bacterial Proteins
/ Corn
/ Corn industry
/ Cotton
/ Cotton industry
/ Crop yield
/ Crop yields
/ Endotoxins
/ Entomology
/ FIELD AND FORAGE CROPS
/ Genetically modified crops
/ Helicoverpa zea
/ Hemolysin Proteins
/ Herbivory
/ Hybrids
/ Larva - growth & development
/ Moths - growth & development
/ non-Bt refuge
/ Plant breeding
/ Plants, Genetically Modified
/ resistance management
/ seed industry
/ seeds
/ Soil sciences
/ Southeastern United States
/ Toxins
/ Vegetables
/ yield stability
/ Zea mays
/ Zea mays - genetics
2024
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Yield analysis and corn earworm feeding in Bt and non-Bt corn hybrids across diverse locations
by
Heiniger, Ryan
, Reisig, Dominic
in
Agricultural production
/ Animals
/ Bacillus thuringiensis Toxins
/ Bacterial Proteins
/ Corn
/ Corn industry
/ Cotton
/ Cotton industry
/ Crop yield
/ Crop yields
/ Endotoxins
/ Entomology
/ FIELD AND FORAGE CROPS
/ Genetically modified crops
/ Helicoverpa zea
/ Hemolysin Proteins
/ Herbivory
/ Hybrids
/ Larva - growth & development
/ Moths - growth & development
/ non-Bt refuge
/ Plant breeding
/ Plants, Genetically Modified
/ resistance management
/ seed industry
/ seeds
/ Soil sciences
/ Southeastern United States
/ Toxins
/ Vegetables
/ yield stability
/ Zea mays
/ Zea mays - genetics
2024
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Yield analysis and corn earworm feeding in Bt and non-Bt corn hybrids across diverse locations
Journal Article
Yield analysis and corn earworm feeding in Bt and non-Bt corn hybrids across diverse locations
2024
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Overview
Corn, Zea mays L. (Poales: Poaceae), growers in the US Cotton Belt are required to plant 20% of total corn acres to non-Bt hybrids for resistance management (non-Bt refuge). Most growers do not meet this requirement, in part, because they perceive non-Bt hybrids to yield less than Bt hybrids. We planted multiple non-Bt and Bt hybrids from a single company in small-plot replicated trials at a single location from 2019 to 2023, as well as in small-plot replicated trials at multiple locations during 2022 and 2023. In the single location, we measured kernel injury from corn earworm, Helicoverpa zea Boddie (Lepidoptera: Noctuidae), and we recorded yield at all locations. In the single location trial, yields only separated among hybrids in 3 out of 5 years. In the multiple location trial, yields were variable between both years. We found that Bt hybrids tended to yield higher than non-Bt hybrids overall, but this was influenced by the inclusion of non-Bt hybrids that had a lower overall genetic yield potential in the environments we tested them in. In both tests, when hybrids were analyzed during each year, both Bt and non-Bt hybrids were among the statistically highest yielders. Our study demonstrates the importance of comparing multiple Bt and non-Bt hybrids to draw yield comparisons. This highlights the need for corn seed company breeders to put effort into improving yield for non-Bt hybrids. Hopefully this effort will translate into increased planting of non-Bt refuge corn for growers in the US Cotton Belt.
Publisher
Entomological Society of America,Oxford University Press
Subject
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