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124 results on '"Silan Dai"'

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1. Flavonoid extracts from chrysanthemum with appropriate anthocyanins turn blue when exposed to iron ions

2. Genome-wide identification and characterization analysis of RWP-RK family genes reveal their role in flowering time of Chrysanthemum lavandulifolium

3. Genome-Wide Analysis of MYB Gene Family in Chrysanthemum ×morifolium Provides Insights into Flower Color Regulation

4. Genome-wide identification of the TCP gene family in Chrysanthemum lavandulifolium and its homologs expression patterns during flower development in different Chrysanthemum species

5. Genetic and QTL analysis of flower color and pigments in small-flowered chrysanthemum based on high-density genetic map

6. Transcriptomic analysis reveals the formation mechanism of anemone-type flower in chrysanthemum

7. Genome-wide identification of the MIKCc-type MADS-box gene family in Chrysanthemum lavandulifolium reveals their roles in the capitulum development

8. Heterosis and Mixed Genetic Analysis of Flowering Traits in Cross Breeding of Day-Neutral Chrysanthemum (Asteraceae)

9. Metric learning for image-based flower cultivars identification

10. Multi-Information Model for Large-Flowered Chrysanthemum Cultivar Recognition and Classification

11. Tobacco Rattle Virus-induced Phytoene Desaturase (PDS) Silencing in Centaurea cyanus

12. Comprehensive transcriptomic analysis provides new insights into the mechanism of ray floret morphogenesis in chrysanthemum

13. Deep learning for image-based large-flowered chrysanthemum cultivar recognition

14. Comparative transcriptomics identifies patterns of selection in roses

15. Isolation and Functional Analysis of Genes Involved in Polyacylated Anthocyanin Biosynthesis in Blue Senecio cruentus

16. The complete chloroplast genome of Cymbidium longibracteatum (Orchidaceae) and phylogenetic analysis

17. Genetic Analysis of Leaf Traits in Small-Flower Chrysanthemum (Chrysanthemum × morifolium Ramat.)

18. Transcriptomics and metabolite analysis reveals the molecular mechanism of anthocyanin biosynthesis branch pathway in different Senecio cruentus cultivars

19. Application of genomic SSR locus polymorphisms on the identification and classification of chrysanthemum cultivars in China.

20. Floral Development Stage-Specific Transcriptomic Analysis Reveals the Formation Mechanism of Different Shapes of Ray Florets in Chrysanthemum

23. Metric learning for image-based flower cultivars identification

24. Difference Analysis of ClCYC2-Like Genes Expression and DNA Methylation Between the Two Types of Florets in Chrysanthemum lavandulifolium

25. Tobacco Rattle Virus-induced Phytoene Desaturase (PDS) Silencing in Centaurea cyanus

26. Methylation-sensitive amplification polymorphism analysis reveals the DNA methylation dynamics during capitulum development in Chrysanthemum lavandulifolium

27. CcMYB6-1 and CcbHLH1, two novel transcription factors synergistically involved in regulating anthocyanin biosynthesis in cornflower

28. Establishment of virus-induced gene silencing system and functional analysis of ScbHLH17 in Senecio cruentus

29. The transcription factor complex CmAP3-CmPI-CmUIF1 modulates carotenoid metabolism by directly regulating the carotenogenic gene CmCCD4a-2 in chrysanthemum

30. Functional analysis of the ScAG and ScAGL11 MADS-box transcription factors for anthocyanin biosynthesis and bicolour pattern formation in Senecio cruentus ray florets

31. TheChrysanthemum lavandulifoliumgenome and the molecular mechanism underlying diverse capitulum types

32. Multi-Information Model for Large-Flowered Chrysanthemum Cultivar Recognition and Classification

34. Comparative transcriptomics and weighted gene co-expression correlation network analysis (WGCNA) reveal potential regulation mechanism of carotenoid accumulation in Chrysanthemum × morifolium

35. Different colored Chrysanthemum × morifolium cultivars represent distinct plastid transformation and carotenoid deposit patterns

36. Transcriptome Analysis of Chrysanthemum lavandulifolium Response to Salt Stress and Overexpression a K+ Transport ClAKT Gene-enhanced Salt Tolerance in Transgenic Arabidopsis

37. The Chrysanthemum lavandulifolium ClNAC9 Gene Positively Regulates Saline, Alkaline, and Drought Stress in Transgenic Chrysanthemum grandiflora

38. Expression pattern of candidate genes in early capitulum morphogenesis of Chrysanthemum lavandulifolium

39. The expression and interactions of ABCE-class and CYC2-like genes in the capitulum development of Chrysanthemum lavandulifolium and C. × morifolium

40. Genetic analysis of the corolla tube merged degree and the relative number of ray florets in chrysanthemum (Chrysanthemum × morifolium Ramat.)

41. The complete chloroplast genome of

42. Isolation and Functional Analysis of Genes Involved in Polyacylated Anthocyanin Biosynthesis in Blue

43. Comprehensive transcriptomic analysis provides new insights into the mechanism of ray floret morphogenesis in chrysanthemum

44. High-density genetic map construction and identification of loci controlling flower-type traits in Chrysanthemum (Chrysanthemum × morifolium Ramat.)

45. Genetic Analysis of Leaf Traits in Small-Flower Chrysanthemum (Chrysanthemum × morifolium Ramat.)

46. High-density genetic map construction and identification of loci controlling flower-type traits in Chrysanthemum (

47. Additional file 2 of Comprehensive transcriptomic analysis provides new insights into the mechanism of ray floret morphogenesis in chrysanthemum

48. ClCRY2 facilitates floral transition in Chrysanthemum lavandulifolium by affecting the transcription of circadian clock-related genes under short-day photoperiods

49. Quantitative Classification of the Morphological Traits of Ray Florets in Large-flowered Chrysanthemum

50. iTRAQ-Based Protein Profiling Provides Insights into the Mechanism of Light-Induced Anthocyanin Biosynthesis in Chrysanthemum (Chrysanthemum × morifolium)

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