177 results on '"Yao, Jia-Long"'
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2. Identifying key residual aluminum species responsible for aggravation of nanofiltration membrane fouling in drinking water treatment
3. The MADS-box gene FveSEP3 plays essential roles in flower organogenesis and fruit development in woodland strawberry
4. Reduced expression of a subunit gene of sucrose non-fermenting 1 related kinase, PpSnRK1βγ, confers flat fruit abortion in peach by regulating sugar and starch metabolism
5. The NAM/ATAF1/2/CUC2 transcription factor PpNAC.A59 enhances PpERF.A16 expression to promote ethylene biosynthesis during peach fruit ripening
6. PbHsfC1a‐coordinates ABA biosynthesis and H2O2 signalling pathways to improve drought tolerance in Pyrus betulaefolia.
7. Two adjacent NAC transcription factors regulate fruit maturity date and flavor in peach
8. Multiomics analyses unveil the involvement of microRNAs in pear fruit senescence under high- or low-temperature conditions
9. Down-Regulation of TM29, a Tomato SEPALLATA Homolog, Causes Parthenocarpic Fruit Development and Floral Reversion
10. An integrated peach genome structural variation map uncovers genes associated with fruit traits
11. The IAA- and ABA-responsive transcription factor CgMYB58 upregulates lignin biosynthesis and triggers juice sac granulation in pummelo
12. Parthenocarpic Apple Fruit Production Conferred by Transposon Insertion Mutations in a MADS-Box Transcription Factor
13. PpERF3 positively regulates ABA biosynthesis by activating PpNCED2/3 transcription during fruit ripening in peach
14. Two adjacent NAC transcription factors regulate fruit maturity date and flavor in peach.
15. MADS-box protein PpDAM6 regulates chilling requirement-mediated dormancy and bud break in peach
16. Auxin inhibits lignin and cellulose biosynthesis in stone cells of pear fruit via the PbrARF13‐PbrNSC‐PbrMYB132 transcriptional regulatory cascade
17. The transcription factor PbrMYB24 regulates lignin and cellulose biosynthesis in stone cells of pear fruits
18. Red-TE Homozygous Alleles of MdMYB10 Confer Full-Red Apple Fruit Skin in a High-Temperature Region
19. Self S‐RNase inhibits ABF–LRX signaling to arrest pollen tube growth to achieve self‐incompatibility in pear
20. Chromosome level high-density integrated genetic maps improve the Pyrus bretschneideri ‘DangshanSuli’ v1.0 genome
21. The genetic locus underlying red foliage and fruit skin traits is mapped to the same location in the two pear bud mutants ‘Red Zaosu’ and ‘Max Red Bartlett’
22. A manually annotated Actinidia chinensis var. chinensis (kiwifruit) genome highlights the challenges associated with draft genomes and gene prediction in plants
23. Transposon insertions regulate genome‐wide allele‐specific expression and underpin flower colour variations in apple ( Malus spp.)
24. Editorial: Rosaceae Fruit Development and Quality
25. A Genomics Approach Reveals That Aroma Production in Apple Is Controlled by Ethylene Predominantly at the Final Step in Each Biosynthetic Pathway
26. The Roles of Floral Organ Genes in Regulating Rosaceae Fruit Development
27. Significant improvement of apple (Malus domestica Borkh.) transgenic plant production by pre-transformation with a Baby boom transcription factor.
28. Multi-omics analyses reveal MdMYB10 hypermethylation being responsible for a bud sport of apple fruit color
29. microRNA172 targets APETALA2 to regulate flavonoid biosynthesis in apple (Malus domestica).
30. Transcriptome analysis of transgenic apple fruit overexpressing microRNA172 reveals candidate transcription factors regulating apple fruit development at early stages
31. A systems genetics approach reveals PbrNSC as a regulator of lignin and cellulose biosynthesis in stone cells of pear fruit
32. Unraveling a genetic roadmap for improved taste in the domesticated apple
33. Isolation of three distinct CycD3 genes expressed during fruit development in tomato
34. A microRNA allele that emerged prior to apple domestication may underlie fruit size evolution
35. Mdh3 encoding a Phalaenopsis O39-like homeodomain protein expressed in ovules of Malus domestica
36. Two loss‐of‐function alleles of the glutathione S‐transferase ( GST ) gene cause anthocyanin deficiency in flower and fruit skin of peach ( Prunus persica )
37. Additional file 1 of Reduced expression of a subunit gene of sucrose non-fermenting 1 related kinase, PpSnRK1βγ, confers flat fruit abortion in peach by regulating sugar and starch metabolism
38. Additional file 17 of A systems genetics approach reveals PbrNSC as a regulator of lignin and cellulose biosynthesis in stone cells of pear fruit
39. Diverse Functions of IAA-Leucine Resistant PpILR1 Provide a Genic Basis for Auxin-Ethylene Crosstalk During Peach Fruit Ripening
40. Additional file 2 of An integrated peach genome structural variation map uncovers genes associated with fruit traits
41. Additional file 3 of An integrated peach genome structural variation map uncovers genes associated with fruit traits
42. Coreless apples generated by the suppression of carpel genes and hormone-induced fruit set
43. Apple SEPALLATA1/2-like genes control fruit flesh development and ripening
44. Down-regulation of TM29, a tomato SEPALLATA homolog, causes parthenocarpic fruit development and floral reversion (1)
45. Down-regulation of TM29, a tomato SEPALLATA homolog, causes parthenocarpic fruit development and floral reversion (1)
46. Additional file 2: of Identification of the defense-related gene VdWRKY53 from the wild grapevine Vitis davidii using RNA sequencing and ectopic expression analysis in Arabidopsis
47. Additional file 1: of Identification of the defense-related gene VdWRKY53 from the wild grapevine Vitis davidii using RNA sequencing and ectopic expression analysis in Arabidopsis
48. Additional file 2: of Chromosome level high-density integrated genetic maps improve the Pyrus bretschneideri ‘DangshanSuli’ v1.0 genome
49. Additional file 3: of A manually annotated Actinidia chinensis var. chinensis (kiwifruit) genome highlights the challenges associated with draft genomes and gene prediction in plants
50. Additional file 10: of A manually annotated Actinidia chinensis var. chinensis (kiwifruit) genome highlights the challenges associated with draft genomes and gene prediction in plants
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