Inheritance and stability of Cry2Ab2 resistance in an Ostrinia nubilalis strain originating from Wisconsin, U.S.

Abstract BACKGROUND Transgenic corn expressing insecticidal proteins from the bacterium Bacillus thuringiensis (Bt), including Cry1Ab, Cry1Fa and/or Cry1A.105/Cry2Ab2, has been used to control Ostrinia nubilalis since 1996. Extensive reliance on Bt corn has led to practical resistance of O. nubilalis to Cry1 Bt corn in Canada and at one location in the U.S. between 2018 and 2024. Understanding the inheritance and stability of insect resistance is essential for the sustainability of Bt technology. Here, we characterized the inheritance of Cry2Ab2 resistance in an O. nubilalis strain derived from insects collected in Wisconsin, USA and evaluated the stability of this resistance over 17 generations in the absence of Cry2Ab2 selection pressure. RESULTS Survival of Cry2Ab2‐susceptible (SS), ‐resistant (RR), reciprocal cross and backcross strains in diet‐overlay bioassays showed that Cry2Ab2 resistance in RR was not influenced by maternal effects or sex linkage. Both Stone's dominance D and effective dominance ( D ML ) values indicated that the resistance is functionally recessive. χ 2 tests comparing expected and observed mortality in F 2 and backcross strains support a Mendelian monogenic mode of inheritance. Stability tests showed no significant differences in survival of RR at any Cry2Ab2 concentration in the first, sixth and seventeenth generations. CONCLUSION Results of this study indicate that resistance to Cry2Ab2 in O. nubilalis is autosomal, functionally recessive, controlled by a single gene, and stable. These findings will improve our understanding of the risks associated with Cry2Ab2 resistance and support the development of effective strategies for the proactive management of Bt resistance in O. nubilalis . © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

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Journal
Pest Management Science
Published
2026-09-20
DOI
https://doi.org/10.1002/ps.71336
Primary Topic
Insect Resistance and Genetics
Type
article
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article

Inheritance and stability of Cry2Ab2 resistance in an Ostrinia nubilalis strain originating from Wisconsin, U.S.

Graham Head, Yucheng Wang, Tatum Dwyer, Fei Yang
Pest Management Science
Insect Resistance and Genetics
article

Inheritance and stability of Cry2Ab2 resistance in an Ostrinia nubilalis strain originating from Wisconsin, U.S.

Graham Head, Yucheng Wang, Tatum Dwyer, Fei Yang
article en

Abstract

Abstract BACKGROUND Transgenic corn expressing insecticidal proteins from the bacterium Bacillus thuringiensis (Bt), including Cry1Ab, Cry1Fa and/or Cry1A.105/Cry2Ab2, has been used to control Ostrinia nubilalis since 1996. Extensive reliance on Bt corn has led to practical resistance of O. nubilalis to Cry1 Bt corn in Canada and at one location in the U.S. between 2018 and 2024. Understanding the inheritance and stability of insect resistance is essential for the sustainability of Bt technology. Here, we characterized the inheritance of Cry2Ab2 resistance in an O. nubilalis strain derived from insects collected in Wisconsin, USA and evaluated the stability of this resistance over 17 generations in the absence of Cry2Ab2 selection pressure. RESULTS Survival of Cry2Ab2‐susceptible (SS), ‐resistant (RR), reciprocal cross and backcross strains in diet‐overlay bioassays showed that Cry2Ab2 resistance in RR was not influenced by maternal effects or sex linkage. Both Stone's dominance D and effective dominance ( D ML ) values indicated that the resistance is functionally recessive. χ 2 tests comparing expected and observed mortality in F 2 and backcross strains support a Mendelian monogenic mode of inheritance. Stability tests showed no significant differences in survival of RR at any Cry2Ab2 concentration in the first, sixth and seventeenth generations. CONCLUSION Results of this study indicate that resistance to Cry2Ab2 in O. nubilalis is autosomal, functionally recessive, controlled by a single gene, and stable. These findings will improve our understanding of the risks associated with Cry2Ab2 resistance and support the development of effective strategies for the proactive management of Bt resistance in O. nubilalis . © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

Pest Management Science
University of Minnesota (US), Bayer (United States) (US)
Industry, innovation and infrastructure
Openalex Percentile: Top 18%
Insect Resistance and Genetics
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