32 results on '"Dong, Jingfang"'
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2. Genome-wide association mapping combined with gene-based haplotype analysis identify a novel gene for shoot length in rice (Oryza sativa L.)
3. A pangenome analysis pipeline provides insights into functional gene identification in rice
4. Progress in the study of functional genes related to direct seeding of rice
5. GWAS and Transcriptomic Analysis Identify OsRING315 as a New Candidate Gene Controlling Amylose Content and Gel Consistency in Rice
6. OsPPR8-1 is essential for early chloroplast development at 30 ℃
7. Pangenome-Wide Association Study and Transcriptome Analysis Reveal a Novel QTL and Candidate Genes Controlling both Panicle and Leaf Blast Resistance in Rice
8. OsNRAMP2 facilitates Cd efflux from vacuoles and contributes to the difference in grain Cd accumulation between japonica and indica rice
9. A Novel Function of GW5 on Controlling the Early Growth Vigor and its Haplotype Effect on Shoot Dry Weight and Grain Size in Rice (Oryza sativa L.).
10. Controlling diurnal flower‐opening time by manipulating the jasmonate pathway accelerates development of indica–japonica hybrid rice breeding.
11. The Function of SD1 on Shoot Length and its Pyramiding Effect on Shoot Length and Plant Height in Rice (Oryza sativa L.)
12. Genome-Wide Identification, Expression and Functional Analysis Reveal the Involvement of FCS-Like Zinc Finger Gene Family in Submergence Response in Rice
13. The OsOXO2, OsOXO3 and OsOXO4 Positively Regulate Panicle Blast Resistance in Rice
14. Genome-Wide Association Mapping and Gene Expression Analysis Reveal the Negative Role of OsMYB21 in Regulating Bacterial Blight Resistance in Rice
15. The 14-3-3 protein OsGF14f interacts with OsbZIP23 and enhances its activity to confer osmotic stress tolerance in rice
16. Genome-wide association mapping combined with gene-based haplotype analysis identify a novel gene for shoot length in rice (Oryza sativa L.)
17. Genome-wide association mapping and gene expression analysis reveal candidate genes for grain chalkiness in rice
18. Overexpression of OsGF14C enhances salinity tolerance but reduces blast resistance in rice
19. Additional file 5 of A pangenome analysis pipeline provides insights into functional gene identification in rice
20. Additional file 3 of A pangenome analysis pipeline provides insights into functional gene identification in rice
21. Additional file 4 of A pangenome analysis pipeline provides insights into functional gene identification in rice
22. Additional file 1 of A pangenome analysis pipeline provides insights into functional gene identification in rice
23. OsFLZ2 interacts with OsMADS51 to fine-tune rice flowering time
24. Genome-wide association mapping and gene expression analysis identify OsCPS1 as a new candidate gene controlling early seedling length in rice
25. Mining candidate genes for rice cadmium accumulation in the shoot through a genome-wide association study and transcriptomic analysis
26. Overexpression of OsGF14f Enhances Quantitative Leaf Blast and Bacterial Blight Resistance in Rice
27. A pangenome analysis pipeline (PSVCP) provides insights into rice functional gene identification
28. A cytosolic pentatricopeptide repeat protein is essential for tapetal plastid development by regulating OsGLK1 transcript levels in rice
29. Genome-Wide Association Study of Pericarp Color in Rice Using Different Germplasm and Phenotyping Methods Reveals Different Genetic Architectures
30. An aspartic protease 47 causes quantitative recessive resistance to rice black‐streaked dwarf virus disease and southern rice black‐streaked dwarf virus disease
31. OsNRAMP2facilitates Cd efflux from vacuoles and contributes to the difference in grain Cd accumulation between japonicaand indicarice
32. Changes in the expression pattern of OsWUS negatively regulate plant stature and panicle development in rice.
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