A second locus associated with high-level resistance to Bt Cry1Ac in Trichoplusia ni

Xiaowei Yang1, Rey O Cotto-Rivera1, Zhangjun Fei2

  • 1Department of Entomology, Cornell University, Geneva, New York, USA.

Insights

Resistance to the insecticidal protein Cry1Ac from Bacillus thuringiensis (Bt) in Trichoplusia ni involves multiple gene mutations. The dominance of these resistance traits can be influenced by the insect

Area of Science:

  • Entomology
  • Molecular Biology
  • Genetics

Background:

  • Bacillus thuringiensis (Bt) insecticidal Cry proteins are vital for pest control.
  • Resistance to Cry1Ac in Trichoplusia ni involves ABCC2 gene mutations and other factors.
  • Understanding resistance mechanisms is crucial for sustained Bt efficacy.

Purpose of the Study:

  • To genetically map the Cry1Ac-R2 resistance trait in Trichoplusia ni.
  • To identify candidate genes within the mapped resistance locus.
  • To investigate the influence of genetic background on resistance trait dominance.

Main Methods:

  • Biphasic linkage analysis using bulked segregant analysis by whole-genome sequencing (BSA-seq) and amplicon sequencing (Amp-seq).
  • Genetic mapping of the Cry1Ac-R2 locus to a specific chromosomal region.
  • Analysis of gene expression in the larval midgut and assessment of trait dominance.

Main Results:

  • Cry1Ac-R2 was localized to a 675-kb region on chromosome 9.
  • 37 genes were identified in the locus, with 25 expressed in the midgut, including APN genes.
  • Dominance of Cry1Ac-R2 was shown to be influenced by the genetic background of T. ni strains.

Conclusions:

  • Insect resistance to Cry1Ac involves multiple gene mutations with varying dominance.
  • Genetic background significantly influences the dominance of insect resistance traits.
  • This complexity impacts Bt efficacy and requires careful consideration in pest management.