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1. Author Correction: Adaptive gene loss in the common bean pan-genome during range expansion and domestication

2. Adaptive gene loss in the common bean pan-genome during range expansion and domestication

4. Selection and adaptive introgression guided the complex evolutionary history of the European common bean

6. The INCREASE project: Intelligent Collections of food‐legume genetic resources for European agrofood systems

9. Landscape genomics highlights the adaptive evolution of chickpea

10. Transcriptomic response to nitrogen availability reveals signatures of adaptive plasticity during tetraploid wheat domestication.

11. Sustainable Crop Production

12. Implementation of theoretical non-photochemical quenching (NPQ(T)) to investigate NPQ of chickpea under drought stress with High-throughput Phenotyping.

13. Genotype Combinations Drive Variability in the Microbiome Configuration of the Rhizosphere of Maize/Bean Intercropping System

14. Ancient genomes reveal early Andean farmers selected common beans while preserving diversity

15. Landscape genetics, adaptive diversity and population structure in Phaseolus vulgaris

17. Challenges and Opportunities behind the Use of Herbaria in Paleogenomics Studies

18. Nitrogen availability during domestication shaped the divergence of tetraploid wheat

19. Domestication and Crop History

22. The evolutionary history of the common bean (Phaseolus vulgaris) revealed by chloroplast and nuclear genomes

23. Common Bean

25. Multi-tissue integration of transcriptomic and specialized metabolite profiling provides tools for assessing the common bean (Phaseolus vulgaris) metabolome

26. Challenges and Opportunities behind the Use of Herbaria in Paleogenomics Studies

28. Author Correction: Ancient genomes reveal early Andean farmers selected common beans while preserving diversity

29. Genetic structure of the Anthyllis vulneraria L. s. l. species complex in Estonia based on AFLPs

31. CRISPR/Cas9-Mediated Enrichment Coupled to Nanopore Sequencing Provides a Valuable Tool for the Precise Reconstruction of Large Genomic Target Regions

32. CRISPR/Cas9-based repeat depletion for the high-throughput genotyping of complex plant genomes

33. Selection and adaptive introgression guided the complex evolutionary history of the European common bean

34. Decreased Nucleotide and Expression Diversity and Modified Coexpression Patterns Characterize Domestication in the Common Bean

35. Domestication and Crop History

36. Decreased metabolic diversity in common beans associated with domestication revealed by untargeted metabolomics, information theory, and molecular networking.

37. Towards the Development, Maintenance and Standardized Phenotypic Characterization of Single-Seed-Descent Genetic Resources for Chickpea

41. Towards the Development, Maintenance and Standardized Phenotypic Characterization of Single‐Seed‐Descent Genetic Resources for Chickpea

43. A core set of bean genotypes established from phenotyping of a Snap Bean Panel

44. Evaluation of the response against powdery mildew and white mold in the snap bean panel

45. Common Bean

46. Towards Development, Maintenance, and Standardized Phenotypic Characterization of Single-Seed-Descent Genetic Resources for Lupins

47. Characterization of Nutritional Quality Traits of a Common Bean Germplasm Collection

48. Towards Development, Maintenance, and Standardized Phenotypic Characterization of Single‐Seed‐Descent Genetic Resources for Lupins

49. The INCREASE project: Intelligent Collections of food-legume genetic resources for European agrofood systems

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