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1. Evolution of chemosensory and detoxification gene families across herbivorous Drosophilidae

3. How interactions with plant chemicals shape insect genomes

4. Horizontal Transfer of Bacterial Cytolethal Distending Toxin B Genes to Insects

5. Insights into the evolution of herbivory from a leaf‐mining fly

6. Habitat preference of an herbivore shapes the habitat distribution of its host plant

7. Aversion and attraction to harmful plant secondary compounds jointly shape the foraging ecology of a specialist herbivore

8. Evolution in an Ancient Detoxification Pathway Is Coupled with a Transition to Herbivory in the Drosophilidae

9. Genes involved in the evolution of herbivory by a leaf-mining, Drosophilid fly.

10. Evolution of chemosensory and detoxification gene families across herbivorous Drosophilidae

17. A Genomic Perspective on the Generation and Maintenance of Genetic Diversity in Herbivorous Insects

19. Supplementary Methods, Tables, and Figures from Evolution and genomic basis of the plant-penetrating ovipositor: a key morphological trait in herbivorous Drosophilidae

22. Evolution and genetic basis of the plant-penetrating ovipositor, a key adaptation in the transition to herbivory within the Drosophilidae

26. Evolution of herbivory remodels aDrosophilagenome

31. Nematode debt to bacteria: the transition by certain nematode worms to plant parasitism, and possibly more generally to herbivory, is illuminated by an investigation into how nematodes acquired the protein weapons to penetrate the plant cell wall

33. Genes Involved in the Evolution of Herbivory by a Leaf-Mining, Drosophilid Fly

34. A weaponized phage suppresses competitors in historical and modern metapopulations of pathogenic bacteria.

35. Evolution of chemosensory and detoxification gene families across herbivorous Drosophilidae.

36. Evolution and genomic basis of the plant-penetrating ovipositor: a key morphological trait in herbivorous Drosophilidae.

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