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5. Improved genetic map identified major QTLs for drought tolerance- and iron deficiency tolerance-related traits in groundnut

7. Combining ability of response to photoperiod in peanut

8. Market‐led options to scale up legume seeds in developing countries: Experiences from the Tropical Legumes Project

10. High oleic peanuts for Asia and Africa to meet the needs of the food processing industries

12. Molecular mapping of oil content and fatty acids using dense genetic maps in groundnut (Arachis hypogaea L.)

14. Registration of Early-Maturing, Moderately Resistant to Rust Peanut Germplasm ICGV 94361

15. Registration of Early-Maturing Fresh Seed Dormant Peanut Germplasm ICGV 93470

16. Registration of ICGV 87354 Peanut Germplasm with Drought Tolerance and Rust Resistance

17. Registration of 'Jeokwangtangkong' Peanut

19. Marker-assisted introgression of a QTL region to improve rust resistance in three elite and popular varieties of peanut (Arachis hypogaea L.)

21. Registration of early-maturing, rust, late leaf spot, and low temperature tolerant peanut germplasm line ICGV 92267. (Registrations Of Germplasm)

24. Introgression of FAD (Fatty Acid Desaturase) mutant alleles for enhanced oil quality in groundnut using marker-assisted backcrossing

25. Groundnut improvement: use of genetic and genomic tools

26. An international reference consensus genetic map with 897 marker loci based on 11 mapping populations for Tetraploid Groundnut (Arachis hypogaea L.)

27. Advances in Arachis genomics for peanut improvement

28. Quantitative trait locus analysis and construction of consensus genetic map for drought tolerance traits based on three recombinant inbred line populations in cultivated groundnut (Arachis hypogaea L.)

29. Advances in genetics and molecular breeding of three legume crops of semi-arid tropics using next-generation sequencing and high-throughput genotyping technologies

30. Identification of several small main-effect QTLs and a large number of epistatic QTLs for drought tolerance related traits in groundnut (Arachis hypogaea L.)

31. Developing genomic resources for facilitating molecular breeding in cultivated groundnut (Arachis hypogaea L.)

32. Development of genomic resources for cultivated groundnut (Arachis hypogaea L.)

33. High level of natural variation in a groundnut (Arachis hypogaeaL.) germplasm collection assayed by selected informative SSR markers

34. The first SSR-based genetic linkage map for cultivated groundnut (Arachis hypogaea L.)

35. Opportunities for improving crop water productivity through genetic enhancement of dryland crops

36. Unstable white flower color in groundnut (Arachis hypogaea L.)

37. SSR-based genetic linkage map for cultivated groundnut (Arachis hypogaea L.) for QTL analysis and comparative mapping

38. Phenotypic assessment of groundnut response to key abiotic stress

40. Registration of an early-maturing peanut germplasm ICGV 86015

41. Molecular genetics and breeding of grain legume crops for the Semi-Arid Tropics

42. Efficiency of physiological trait-based and empirical selection approaches for drought tolerance in groundnut

46. Genetic Options for Drought Management in Groundnut

47. Selection index for identifying high-yielding groundnut genotypes in irrigated and rainfed environments

48. More efficient breeding of drought resistant groundnut in India and Australia

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