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1. Modulation of TRPA1 thermal sensitivity enables sensory discrimination in Drosophila

2. Additional file 6: Figure S4. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

3. Additional file 8 : Figure S6. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

4. Additional file 2: Figure S2. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

5. Additional file 12: Figure S10. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

6. Additional file 9: Figure S7. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

10. Metabolic and Target-Site Mechanisms Combine to Confer Strong DDT Resistance in Anopheles gambiae

11. CYP6 P450 Enzymes and ACE-1 Duplication Produce Extreme and Multiple Insecticide Resistance in the Malaria Mosquito Anopheles gambiae

12. A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis.

14. Metabolic and Target-Site Mechanisms Combine to Confer Strong DDT Resistance in Anopheles gambiae.

15. CYP6 P450 Enzymes and ACE-1 Duplication Produce Extreme and Multiple Insecticide Resistance in the Malaria Mosquito Anopheles gambiae.

16. Additional file 11: Figure S9. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

17. Additional file 5: Figure S3. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

18. Additional file 5: Figure S3. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

19. Additional file 11: Figure S9. of A critical role for the Drosophila dopamine D1-like receptor Dop1R2 at the onset of metamorphosis

20. CYP6 P450 Enzymes and ACE-1 Duplication Produce Extreme and Multiple Insecticide Resistance in the Malaria Mosquito Anopheles gambiae.

21. Metabolic and Target-Site Mechanisms Combine to Confer Strong DDT Resistance in Anopheles gambiae.

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