Proteome response of Tribolium castaneum larvae to Bacillus thuringiensis toxin producing strains

Estefanía Contreras1, Carolina Rausell, M Dolores Real

  • 1Departamento de Genética, Facultad de Ciencias Biológicas, Universidad de Valencia, Burjassot, Valencia, Spain.

Plos One
|February 2, 2013
PubMed

Insights

Tribolium castaneum larvae susceptibility to Bacillus thuringiensis Cry toxins revealed distinct host responses. Upregulated odorant binding proteins suggest immune defense, while downregulated metabolic proteins indicate developmental disruption.

Area of Science:

  • Insect toxicology
  • Molecular entomology
  • Biochemistry

Background:

  • Bacillus thuringiensis (Bt) Cry toxins are widely used biopesticides.
  • Understanding insect responses to Bt is crucial for effective pest management.
  • Tribolium castaneum (red flour beetle) is a significant agricultural pest.

Purpose of the Study:

  • To determine the susceptibility of Tribolium castaneum larvae to specific Bt Cry toxins.
  • To identify early molecular responses in Tc larvae exposed to toxic Cry proteins.
  • To elucidate the functional roles of differentially expressed proteins in insecticidal activity.

Main Methods:

  • Larval susceptibility assays using spore-crystal mixtures of Bt strains.
  • Quantitative proteomics (iTRAQ LC-MS/MS) to identify differentially expressed proteins.
  • Gene silencing (RNAi) and mRNA expression analysis to validate protein functions.

Main Results:

  • Cry3Ba and Cry23Aa/Cry37Aa proteins were toxic to Tc larvae.
  • Seven novel differentially expressed proteins were identified.
  • Upregulated proteins (e.g., Odorant Binding Protein C12) involved in host defense.
  • Downregulated proteins (e.g., pyruvate dehydrogenase) linked to metabolism and development.
  • Odorant Binding Protein C12 silencing confirmed its immune defense role.
  • Distinct transcriptional responses observed between Cry3Ba and Cry23Aa/Cry37Aa treatments.

Conclusions:

  • Bt Cry toxins induce specific transcriptional reprogramming in Tribolium castaneum larvae.
  • Host defense and metabolic pathways are key targets of Cry toxin intoxication.
  • Non-olfactory odorant binding proteins play a role in general immune defense.
  • Differential regulation of metabolic genes may contribute to developmental arrest.
  • This knowledge aids in developing improved Bt-based pest control strategies.