390 results on '"Tian, Zhixi"'
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2. Loss of Lateral suppressor gene is associated with evolution of root nodule symbiosis in Leguminosae
3. Publisher Correction: Natural variation in GmSW17 controls seed size in soybean
4. Natural variation in GmSW17 controls seed size in soybean
5. The type III effector NopL interacts with GmREM1a and GmNFR5 to promote symbiosis in soybean
6. Pan-3D genome analysis reveals structural and functional differentiation of soybean genomes
7. Natural variants of molybdate transporters contribute to yield traits of soybean by affecting auxin synthesis
8. Genome-wide scan for oil quality reveals a coregulation mechanism of tocopherols and fatty acids in soybean seeds
9. QNE1 is a key flowering regulator determining the length of the vegetative period in soybean cultivars
10. Natural variation of GmRj2/Rfg1 determines symbiont differentiation in soybean
11. GenoBaits Soy40K: a highly flexible and low-cost SNP array for soybean studies
12. Plant pan-genomics and its applications
13. Toward cis-regulation in soybean: a 3D genome scope
14. High-resolution silkworm pan-genome provides genetic insights into artificial selection and ecological adaptation
15. Natural variation of Dt2 determines branching in soybean
16. Temperature driven antagonistic fate determination by two bHLH transcription factors: dormancy or germination
17. Duplication and sub‐functionalization of flavonoid biosynthesis genes plays important role in Leguminosae root nodule symbiosis evolution.
18. High-Precision Automated Soybean Phenotypic Feature Extraction Based on Deep Learning and Computer Vision.
19. Chromosome‐level reference genome and resequencing of 322 accessions reveal evolution, genomic imprint and key agronomic traits in adzuki bean
20. Fine mapping QTL and mining genes for protein content in soybean by the combination of linkage and association analysis
21. The MADS‐box transcription factor GmFULc promotes GmZTL4 gene transcription to modulate maturity in soybean.
22. Readthrough events in plants reveal plasticity of stop codons
23. FED: a web tool for foreign element detection of genome-edited organism
24. Convergent selection of a gene in cereals leads to grain yield upgradation
25. From one linear genome to a graph-based pan-genome: a new era for genomics
26. Stepwise selection on homeologous PRR genes controlling flowering and maturity during soybean domestication
27. GmMATE100 Is Involved in the Import of Soyasaponins A and B into Vacuoles in Soybean Plants (Glycine max L.).
28. Natural allelic diversities of GmPrx16 confer drought tolerance in soybean
29. Pan-centromere reveals widespread centromere repositioning of soybean genomes
30. Update soybean Zhonghuang 13 genome to a golden reference
31. Genome Sequence of the Palaeopolyploid soybean
32. A recently evolved BAHD acetyltransferase, responsible for bitter soyasaponin A production, is indispensable for soybean seed germination
33. GmMATE100Is Involved in the Import of Soyasaponins A and B into Vacuoles in Soybean Plants (Glycine maxL.)
34. Identification of QTL and genes for pod number in soybean by linkage analysis and genome-wide association studies
35. Decrease of gene expression diversity during domestication of animals and plants
36. Parallel selection on a dormancy gene during domestication of crops from multiple families
37. De novo assembly of a Chinese soybean genome
38. Elevation of soybean seed oil content through selection for seed coat shininess
39. Rhizosphere Microbiota Promotes the Growth of Soybeans in a Saline–Alkali Environment under Plastic Film Mulching
40. Widespread readthrough events in plants reveal unprecedented plasticity of stop codons
41. SoyOmics: A deeply integrated database on soybean multi-omics
42. A soybean quantitative trait locus that promotes flowering under long days is identified as FT5a , a FLOWERING LOCUS T ortholog
43. Natural allelic diversities of GmPrx16 confer drought tolerance in soybean.
44. Natural GmACO1allelic variations confer drought tolerance and influence nodule formation in soybean
45. Global dissection of the recombination landscape in soybean using a high‐density 600K SoySNP array
46. Additional file 3 of Pan-3D genome analysis reveals structural and functional differentiation of soybean genomes
47. Additional file 1 of Pan-3D genome analysis reveals structural and functional differentiation of soybean genomes
48. Natural variation at the soybean J locus improves adaptation to the tropics and enhances yield
49. Genome sequencing of adzuki bean ( Vigna angularis ) provides insight into high starch and low fat accumulation and domestication
50. Functional Evolution of Phosphatidylethanolamine Binding Proteins in Soybean and Arabidopsis
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