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Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance

SIMPLE SUMMARY: Corn and cotton that produce insecticidal toxins derived from Bacillus thuringiensis (Bt) are widely adopted in the United States to control corn earworm/cotton bollworm, Helicoverpa zea (Boddie), which has resulted in major benefits to growers and the general public. However, resist...

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Autores principales: Dively, Galen P., Kuhar, Tom P., Taylor, Sally V., Doughty, Helene, Holmstrom, Kristian, Gilrein, Daniel O., Nault, Brian A., Ingerson-Mahar, Joseph, Huseth, Anders, Reisig, Dominic, Fleischer, Shelby, Owens, David, Tilmon, Kelley, Reay-Jones, Francis, Porter, Pat, Smith, Jocelyn, Saguez, Julien, Wells, Jason, Congdon, Caitlin, Byker, Holly, Jensen, Bryan, DiFonzo, Chris, Hutchison, William D., Burkness, Eric, Wright, Robert, Crossley, Michael, Darby, Heather, Bilbo, Tom, Seiter, Nicholas, Krupke, Christian, Abel, Craig, Coates, Brad S., McManus, Bradley, Fuller, Billy, Bradshaw, Jeffrey, Peterson, Julie A., Buntin, David, Paula-Moraes, Silvana, Kesheimer, Katelyn, Crow, Whitney, Gore, Jeffrey, Huang, Fangneng, Ludwick, Dalton C., Raudenbush, Amy, Jimenez, Sebastian, Carrière, Yves, Elkner, Timothy, Hamby, Kelly
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380249/
https://www.ncbi.nlm.nih.gov/pubmed/37504584
http://dx.doi.org/10.3390/insects14070577
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author Dively, Galen P.
Kuhar, Tom P.
Taylor, Sally V.
Doughty, Helene
Holmstrom, Kristian
Gilrein, Daniel O.
Nault, Brian A.
Ingerson-Mahar, Joseph
Huseth, Anders
Reisig, Dominic
Fleischer, Shelby
Owens, David
Tilmon, Kelley
Reay-Jones, Francis
Porter, Pat
Smith, Jocelyn
Saguez, Julien
Wells, Jason
Congdon, Caitlin
Byker, Holly
Jensen, Bryan
DiFonzo, Chris
Hutchison, William D.
Burkness, Eric
Wright, Robert
Crossley, Michael
Darby, Heather
Bilbo, Tom
Seiter, Nicholas
Krupke, Christian
Abel, Craig
Coates, Brad S.
McManus, Bradley
Fuller, Billy
Bradshaw, Jeffrey
Peterson, Julie A.
Buntin, David
Paula-Moraes, Silvana
Kesheimer, Katelyn
Crow, Whitney
Gore, Jeffrey
Huang, Fangneng
Ludwick, Dalton C.
Raudenbush, Amy
Jimenez, Sebastian
Carrière, Yves
Elkner, Timothy
Hamby, Kelly
author_facet Dively, Galen P.
Kuhar, Tom P.
Taylor, Sally V.
Doughty, Helene
Holmstrom, Kristian
Gilrein, Daniel O.
Nault, Brian A.
Ingerson-Mahar, Joseph
Huseth, Anders
Reisig, Dominic
Fleischer, Shelby
Owens, David
Tilmon, Kelley
Reay-Jones, Francis
Porter, Pat
Smith, Jocelyn
Saguez, Julien
Wells, Jason
Congdon, Caitlin
Byker, Holly
Jensen, Bryan
DiFonzo, Chris
Hutchison, William D.
Burkness, Eric
Wright, Robert
Crossley, Michael
Darby, Heather
Bilbo, Tom
Seiter, Nicholas
Krupke, Christian
Abel, Craig
Coates, Brad S.
McManus, Bradley
Fuller, Billy
Bradshaw, Jeffrey
Peterson, Julie A.
Buntin, David
Paula-Moraes, Silvana
Kesheimer, Katelyn
Crow, Whitney
Gore, Jeffrey
Huang, Fangneng
Ludwick, Dalton C.
Raudenbush, Amy
Jimenez, Sebastian
Carrière, Yves
Elkner, Timothy
Hamby, Kelly
author_sort Dively, Galen P.
collection PubMed
description SIMPLE SUMMARY: Corn and cotton that produce insecticidal toxins derived from Bacillus thuringiensis (Bt) are widely adopted in the United States to control corn earworm/cotton bollworm, Helicoverpa zea (Boddie), which has resulted in major benefits to growers and the general public. However, resistance evolution in H. zea populations has become a major threat to the sustainability of these crops. Bt sweet corn producing the same toxins as Bt field corn is more attractive to H. zea than field corn and, thus, can function as a sentinel plant to detect early stages of resistance. As part of an existing sentinel monitoring network, this study evaluated changes in H. zea resistance during 2020–2022 by estimating the phenotypic and resistance allele frequencies for toxins in sentinel Bt corn. ABSTRACT: Transgenic corn and cotton that produce Cry and Vip3Aa toxins derived from Bacillus thuringiensis (Bt) are widely planted in the United States to control lepidopteran pests. The sustainability of these Bt crops is threatened because the corn earworm/bollworm, Helicoverpa zea (Boddie), is evolving a resistance to these toxins. Using Bt sweet corn as a sentinel plant to monitor the evolution of resistance, collaborators established 146 trials in twenty-five states and five Canadian provinces during 2020–2022. The study evaluated overall changes in the phenotypic frequency of resistance (the ratio of larval densities in Bt ears relative to densities in non-Bt ears) in H. zea populations and the range of resistance allele frequencies for Cry1Ab and Vip3Aa. The results revealed a widespread resistance to Cry1Ab, Cry2Ab2, and Cry1A.105 Cry toxins, with higher numbers of larvae surviving in Bt ears than in non-Bt ears at many trial locations. Depending on assumptions about the inheritance of resistance, allele frequencies for Cry1Ab ranged from 0.465 (dominant resistance) to 0.995 (recessive resistance). Although Vip3Aa provided high control efficacy against H. zea, the results show a notable increase in ear damage and a number of surviving older larvae, particularly at southern locations. Assuming recessive resistance, the estimated resistance allele frequencies for Vip3Aa ranged from 0.115 in the Gulf states to 0.032 at more northern locations. These findings indicate that better resistance management practices are urgently needed to sustain efficacy the of corn and cotton that produce Vip3Aa.
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spelling pubmed-103802492023-07-29 Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance Dively, Galen P. Kuhar, Tom P. Taylor, Sally V. Doughty, Helene Holmstrom, Kristian Gilrein, Daniel O. Nault, Brian A. Ingerson-Mahar, Joseph Huseth, Anders Reisig, Dominic Fleischer, Shelby Owens, David Tilmon, Kelley Reay-Jones, Francis Porter, Pat Smith, Jocelyn Saguez, Julien Wells, Jason Congdon, Caitlin Byker, Holly Jensen, Bryan DiFonzo, Chris Hutchison, William D. Burkness, Eric Wright, Robert Crossley, Michael Darby, Heather Bilbo, Tom Seiter, Nicholas Krupke, Christian Abel, Craig Coates, Brad S. McManus, Bradley Fuller, Billy Bradshaw, Jeffrey Peterson, Julie A. Buntin, David Paula-Moraes, Silvana Kesheimer, Katelyn Crow, Whitney Gore, Jeffrey Huang, Fangneng Ludwick, Dalton C. Raudenbush, Amy Jimenez, Sebastian Carrière, Yves Elkner, Timothy Hamby, Kelly Insects Article SIMPLE SUMMARY: Corn and cotton that produce insecticidal toxins derived from Bacillus thuringiensis (Bt) are widely adopted in the United States to control corn earworm/cotton bollworm, Helicoverpa zea (Boddie), which has resulted in major benefits to growers and the general public. However, resistance evolution in H. zea populations has become a major threat to the sustainability of these crops. Bt sweet corn producing the same toxins as Bt field corn is more attractive to H. zea than field corn and, thus, can function as a sentinel plant to detect early stages of resistance. As part of an existing sentinel monitoring network, this study evaluated changes in H. zea resistance during 2020–2022 by estimating the phenotypic and resistance allele frequencies for toxins in sentinel Bt corn. ABSTRACT: Transgenic corn and cotton that produce Cry and Vip3Aa toxins derived from Bacillus thuringiensis (Bt) are widely planted in the United States to control lepidopteran pests. The sustainability of these Bt crops is threatened because the corn earworm/bollworm, Helicoverpa zea (Boddie), is evolving a resistance to these toxins. Using Bt sweet corn as a sentinel plant to monitor the evolution of resistance, collaborators established 146 trials in twenty-five states and five Canadian provinces during 2020–2022. The study evaluated overall changes in the phenotypic frequency of resistance (the ratio of larval densities in Bt ears relative to densities in non-Bt ears) in H. zea populations and the range of resistance allele frequencies for Cry1Ab and Vip3Aa. The results revealed a widespread resistance to Cry1Ab, Cry2Ab2, and Cry1A.105 Cry toxins, with higher numbers of larvae surviving in Bt ears than in non-Bt ears at many trial locations. Depending on assumptions about the inheritance of resistance, allele frequencies for Cry1Ab ranged from 0.465 (dominant resistance) to 0.995 (recessive resistance). Although Vip3Aa provided high control efficacy against H. zea, the results show a notable increase in ear damage and a number of surviving older larvae, particularly at southern locations. Assuming recessive resistance, the estimated resistance allele frequencies for Vip3Aa ranged from 0.115 in the Gulf states to 0.032 at more northern locations. These findings indicate that better resistance management practices are urgently needed to sustain efficacy the of corn and cotton that produce Vip3Aa. MDPI 2023-06-25 /pmc/articles/PMC10380249/ /pubmed/37504584 http://dx.doi.org/10.3390/insects14070577 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dively, Galen P.
Kuhar, Tom P.
Taylor, Sally V.
Doughty, Helene
Holmstrom, Kristian
Gilrein, Daniel O.
Nault, Brian A.
Ingerson-Mahar, Joseph
Huseth, Anders
Reisig, Dominic
Fleischer, Shelby
Owens, David
Tilmon, Kelley
Reay-Jones, Francis
Porter, Pat
Smith, Jocelyn
Saguez, Julien
Wells, Jason
Congdon, Caitlin
Byker, Holly
Jensen, Bryan
DiFonzo, Chris
Hutchison, William D.
Burkness, Eric
Wright, Robert
Crossley, Michael
Darby, Heather
Bilbo, Tom
Seiter, Nicholas
Krupke, Christian
Abel, Craig
Coates, Brad S.
McManus, Bradley
Fuller, Billy
Bradshaw, Jeffrey
Peterson, Julie A.
Buntin, David
Paula-Moraes, Silvana
Kesheimer, Katelyn
Crow, Whitney
Gore, Jeffrey
Huang, Fangneng
Ludwick, Dalton C.
Raudenbush, Amy
Jimenez, Sebastian
Carrière, Yves
Elkner, Timothy
Hamby, Kelly
Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance
title Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance
title_full Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance
title_fullStr Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance
title_full_unstemmed Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance
title_short Extended Sentinel Monitoring of Helicoverpa zea Resistance to Cry and Vip3Aa Toxins in Bt Sweet Corn: Assessing Changes in Phenotypic and Allele Frequencies of Resistance
title_sort extended sentinel monitoring of helicoverpa zea resistance to cry and vip3aa toxins in bt sweet corn: assessing changes in phenotypic and allele frequencies of resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380249/
https://www.ncbi.nlm.nih.gov/pubmed/37504584
http://dx.doi.org/10.3390/insects14070577
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