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2. The pan-tandem repeat map highlights multiallelic variants underlying gene expression and agronomic traits in rice

9. A super pan-genomic landscape of rice

10. A complete assembly of the rice Nipponbare reference genome

12. Identification of salt tolerance‐associated presence–absence variations in the OsMADS56 gene through the integration of DEGs dataset and eQTL analysis

13. A pan-TE map highlights transposable elements underlying domestication and agronomic traits in Asian rice

15. Landscape of somatic alterations in large-scale solid tumors from an Asian population

18. Uncovering key salt-tolerant regulators through a combined eQTL and GWAS analysis using the super pan-genome in rice

19. New developments in existing WHO entities and evolving molecular concepts: The Genitourinary Pathology Society (GUPS) update on renal neoplasia

20. Novel, emerging and provisional renal entities: The Genitourinary Pathology Society (GUPS) update on renal neoplasia

21. A rice variation map derived from 10 548 rice accessions reveals the importance of rare variants

22. Correlation of CLDN23 SNP Polymorphisms with Hereditary Susceptibility and Prognosis of Gastric Carcinoma in Han Nationality in Fujian

26. A centromere map based on super pan‐genome highlights the structure and function of rice centromeres.

27. Identification of natural allelic variation in TTL1 controlling thermotolerance and grain size by a rice super pan‐genome

29. Correction to: Novel, emerging and provisional renal entities: the Genitourinary Pathology Society (GUPS) update on renal neoplasia

30. Identifying candidate genes and patterns of heat-stress response in rice using a genome-wide association study and transcriptome analyses

33. Single‐Cell RNA‐seq Reveals a Developmental Hierarchy Super‐Imposed Over Subclonal Evolution in the Cellular Ecosystem of Prostate Cancer

38. Additional file 7 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

39. Additional file 10 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

40. Additional file 9 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

41. Additional file 5 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

42. Additional file 3 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

43. Additional file 4 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

44. Additional file 6 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

45. Additional file 2 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

46. Additional file 8 of Loci and natural alleles for cadmium-mediated growth responses revealed by a genome wide association study and transcriptome analysis in rice

47. The SEEDLING BIOMASS 1 allele from indica rice enhances yield performance under low‐nitrogen environments

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