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5. Comparative genomic analyses reveal the genetic basis of the yellow-seed trait in Brassica napus

15. Overexpression of BnaA10.WRKY75 Decreases Cadmium and Salt Tolerance via Increasing ROS Accumulation in Arabidopsis and Brassica napus L.

24. Whole-genome resequencing reveals Brassica napus origin and genetic loci involved in its improvement

31. BnbHLH92a negatively regulates anthocyanin and proanthocyanidin biosynthesis in Brassica napus

33. Genome-wide analysis and expression profiling of the SUC and SWEET gene families of sucrose transporters in oilseed rape (Brassica napus L.)

37. Metabolite Profiling and Transcriptome Analysis Provide Insight into Seed Coat Color in Brassica juncea

38. Additional file 7 of Genetic mapping high protein content QTL from soybean ‘Nanxiadou 25’ and candidate gene analysis

40. Additional file 1 of Genetic mapping high protein content QTL from soybean ‘Nanxiadou 25’ and candidate gene analysis

41. Additional file 6 of Genetic mapping high protein content QTL from soybean ‘Nanxiadou 25’ and candidate gene analysis

42. Additional file 5 of Genetic mapping high protein content QTL from soybean ‘Nanxiadou 25’ and candidate gene analysis

43. Additional file 4 of Genetic mapping high protein content QTL from soybean ‘Nanxiadou 25’ and candidate gene analysis

48. Comparative Analysis of the Metabolic Profiles of Yellow- versus Black-Seeded Rapeseed Using UPLC–HESI–MS/MS and Transcriptome Analysis

49. Knockout of the lignin pathway gene BnF5H decreases the S/G lignin compositional ratio and improves Sclerotinia sclerotiorum resistance in Brassica napus.

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