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1. Dissecting the genetic basis of resistance to Soil-borne cereal mosaic virus (SBCMV) in durum wheat by bi-parental mapping and GWAS

5. The auxin efflux carrier PIN1a regulates vascular patterning in cereal roots.

6. Genetics basis of root architecture variation in barley (Hordeum vulgare L.)

7. Wheat root systems as a breeding target for climate resilience

8. Dissecting the effect of heat stress on durum wheat under field conditions.

9. Lipids and Fatty Acid Composition Reveal Differences between Durum Wheat Landraces and Modern Cultivars.

10. Marker-Assisted Breeding in Crops

12. Global agricultural intensification during climate change: a role for genomics

13. Reduced response diversity does not negatively impact wheat climate resilience

14. A high‐density, SNP‐based consensus map of tetraploid wheat as a bridge to integrate durum and bread wheat genomics and breeding

15. Application of genomics-assisted breeding for generation of climate resilient crops: progress and prospects.

17. A consensus framework map of durum wheat (Triticum durum Desf.) suitable for linkage disequilibrium analysis and genome-wide association mapping.

18. Characterization of polyploid wheat genomic diversity using a high‐density 90 000 single nucleotide polymorphism array

19. Characterization of polyploid wheat genomic diversity using a high-density 90,000 single nucleotide polymorphism array.

21. Association Mapping of Resistance to Tan Spot in the Global Durum Panel

22. Durum wheat genome highlights past domestication signatures and future improvement targets

24. Wild emmer genome architecture and diversity elucidate wheat evolution and domestication

26. Early Detection of Drought Stress in Durum Wheat Using Hyperspectral Imaging and Photosystem Sensing.

29. Characterization of an international tetraploid wheat germplasm including landraces and primitive wheat towards improved resilience to abiotic and biotic stresses and quality

33. Correction to: The Maize Genome

44. Meeting the Challenges Facing Wheat Production: The Strategic Research Agenda of the Global Wheat Initiative

50. Root angle is controlled by EGT1in cereal crops employing anantigravitropic mechanism

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