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1. Molecular characterization and immune association of Fas‐associated death domain protein (FADD) in Tenebrio molitor.

2. Growth performance and nutritional profile of Tenebrio molitor raised on a diet composed of livestock feedstuff.

3. In silico identification and expression analysis of glutathione S‐transferase in Tenebrio molitor.

4. Expression pattern analysis of transmembrane receptor TmToll‐8, −9, and −10 in the coleopteran insect Tenebrio molitor following systemic infection.

5. In silico identification and expression analyses of catalases in Tenebrio molitor.

6. Effects of TmTak1 silencing on AMP production as an Imd pathway component in Tenebrio molitor.

7. Innate Immune Response of TmToll-3 Following Systemic Microbial Infection in Tenebrio molitor.

8. Immunological Roles of TmToll-2 in Response to Escherichia coli Systemic Infection in Tenebrio molitor.

9. Identification, in silico characterization, and expression analysis of Tenebrio molitor Cecropin‐2.

10. In silico identification and expression analyses of Defensin genes in the mealworm beetle Tenebrio molitor.

11. Bacterial but not fungal challenge up‐regulates the transcription of Coleoptericin genes in Tenebrio molitor.

12. IKKβ regulates antimicrobial innate immune responses in the yellow mealworm, Tenebrio molitor.

13. A midgut lysate of the Riptortus pedestris has antibacterial activity against LPS O-antigen-deficient Burkholderia mutants.

14. Purine biosynthesis-deficient Burkholderia mutants are incapable of symbiotic accommodation in the stinkbug.

15. Tm Spz-like Plays a Fundamental Role in Response to E. coli but Not S. aureus or C. albican Infection in Tenebrio molitor via Regulation of Antimicrobial Peptide Production.

16. An antimicrobial protein of the Riptortus pedestris salivary gland was cleaved by a virulence factor of Serratia marcescens.

17. Understanding regulation of the host-mediated gut symbiont population and the symbiont-mediated host immunity in the Riptortus-Burkholderia symbiosis system.

18. Bacterial cell motility of Burkholderia gut symbiont is required to colonize the insect gut.

19. Current knowledge of immune priming in invertebrates, emphasizing studies on Tenebrio molitor.

20. Burkholderia gut symbiont modulates titer of specific juvenile hormone in the bean bug Riptortus pedestris.

21. Gut symbiotic bacteria stimulate insect growth and egg production by modulating hexamerin and vitellogenin gene expression.

22. Burkholderia gut symbionts enhance the innate immunity of host Riptortus pedestris.

23. IKKγ/NEMO Is Required to Confer Antimicrobial Innate Immune Responses in the Yellow Mealworm, Tenebrio Molitor.

24. Aedes albopictus Autophagy-Related Gene 8 (AaAtg8) Is Required to Confer Anti-Bacterial Gut Immunity.

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