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1. Genomic versus phenotypic selection to improve corn borer resistance and grain yield in maize.

2. Domestication reshaped the genetic basis of inbreeding depression in a maize landrace compared to its wild relative, teosinte.

3. A conserved genetic architecture among populations of the maize progenitor, teosinte, was radically altered by domestication.

4. Genome-wide association analysis of the strength of the MAMP-elicited defense response and resistance to target leaf spot in sorghum.

5. The genetic architecture of the maize progenitor, teosinte, and how it was altered during maize domestication.

6. A Genome-Wide Association Study To Understand the Effect of Fusarium verticillioides Infection on Seedlings of a Maize Diversity Panel.

7. Genome-wide association analysis for maize stem Cell Wall-bound Hydroxycinnamates.

8. Mapping of resistance to corn borers in a MAGIC population of maize.

9. QTLs for Resistance to Fusarium Ear Rot in a Multiparent Advanced Generation Intercross (MAGIC) Maize Population.

10. Genome-wide association analysis for fumonisin content in maize kernels.

11. The genetic architecture of teosinte catalyzed and constrained maize domestication.

12. A Genome Wide Association Study Reveals Markers and Genes Associated with Resistance to Fusarium verticillioides Infection of Seedlings in a Maize Diversity Panel.

13. QTL Mapping for Yield and Resistance against Mediterranean Corn Borer in Maize.

14. QTL for Maize Midparent Heterosis in the Heterotic Pattern American Dent × European Flint under Corn Borer Pressure.

15. Modifications to a LATE MERISTEM IDENTITY1 gene are responsible for the major leaf shapes of Upland cotton (Gossypium hirsutum L.).

16. Hydroxycinnamate Synthesis and Association with Mediterranean Corn Borer Resistance.

17. Identification of QTL for resistance to Mediterranean corn borer in a maize tropical line to improve temperate germplasm.

18. Genome-wide association study reveals a set of genes associated with resistance to the Mediterranean corn borer (Sesamia nonagrioides L.) in a maize diversity panel.

19. A genome-wide association study reveals genes associated with fusarium ear rot resistance in a maize core diversity panel.

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