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1. VvbHLH036, a basic helix-loop-helix transcription factor regulates the cold tolerance of grapevine.

2. The road less taken: Dihydroflavonol 4-reductase inactivation and delphinidin anthocyanin loss underpins a natural intraspecific flower colour variation.

3. Current perspectives of lncRNAs in abiotic and biotic stress tolerance in plants.

4. MYB24 orchestrates terpene and flavonol metabolism as light responses to anthocyanin depletion in variegated grape berries.

5. Aggregated gene co-expression networks predict transcription factor regulatory landscapes in grapevine.

6. Many different flowers make a bouquet: Lessons from specialized metabolite diversity in plant-pollinator interactions.

7. Dissecting the effect of ethylene in the transcriptional regulation of chilling treatment in grapevine leaves.

8. Altering the balance between AOX1A and NDB2 expression affects a common set of transcripts in Arabidopsis.

9. Conserved pigment pathways underpin the dark insectiform floral structures of sexually deceptive Chiloglottis (Orchidaceae).

10. Orchid Phylotranscriptomics: The Prospects of Repurposing Multi-Tissue Transcriptomes for Phylogenetic Analysis and Beyond.

11. Emerging Roles of Plant DNA-Binding With One Finger Transcription Factors in Various Hormone and Stress Signaling Pathways.

12. Direct regulation of shikimate, early phenylpropanoid, and stilbenoid pathways by Subgroup 2 R2R3-MYBs in grapevine.

13. Anthocyanin and Flavonol Glycoside Metabolic Pathways Underpin Floral Color Mimicry and Contrast in a Sexually Deceptive Orchid.

14. GRAS-domain transcription factor PAT1 regulates jasmonic acid biosynthesis in grape cold stress response.

15. A multitiered sequence capture strategy spanning broad evolutionary scales: Application for phylogenetic and phylogeographic studies of orchids.

16. Biosynthesis and Cellular Functions of Tartaric Acid in Grapevines.

17. De novo transcriptome analysis of Chlorella sorokiniana: effect of glucose assimilation, and moderate light intensity.

18. Dwarfism of high-monolignol Arabidopsis plants is rescued by ectopic LACCASE overexpression.

19. Network aggregation improves gene function prediction of grapevine gene co-expression networks.

20. Drought stress modulates cuticular wax composition of the grape berry.

21. Biological impacts of phosphomimic AtMYB75.

22. Cannabis glandular trichomes alter morphology and metabolite content during flower maturation.

23. The ethylene response factor VaERF092 from Amur grape regulates the transcription factor VaWRKY33, improving cold tolerance.

24. Duplication and selection in β-ketoacyl-ACP synthase gene lineages in the sexually deceptive Chiloglottis (Orchidaceace).

25. Swift metabolite changes and leaf shedding are milestones in the acclimation process of grapevine under prolonged water stress.

27. Ethylene receptors and related proteins in climacteric and non-climacteric fruits.

28. Evidence for the Involvement of Fatty Acid Biosynthesis and Degradation in the Formation of Insect Sex Pheromone-Mimicking Chiloglottones in Sexually Deceptive Chiloglottis Orchids.

29. Combinatorial Regulation of Stilbene Synthase Genes by WRKY and MYB Transcription Factors in Grapevine (Vitis vinifera L.).

30. Structure and transcriptional regulation of the major intrinsic protein gene family in grapevine.

31. The GARP/MYB-related grape transcription factor AQUILO improves cold tolerance and promotes the accumulation of raffinose family oligosaccharides.

32. Co-expression network analysis and cis-regulatory element enrichment determine putative functions and regulatory mechanisms of grapevine ATL E3 ubiquitin ligases.

33. The Biosynthesis of Unusual Floral Volatiles and Blends Involved in Orchid Pollination by Deception: Current Progress and Future Prospects.

34. Tissue-Specific Floral Transcriptome Analysis of the Sexually Deceptive Orchid Chiloglottis trapeziformis Provides Insights into the Biosynthesis and Regulation of Its Unique UV-B Dependent Floral Volatile, Chiloglottone 1.

35. Complex Sexual Deception in an Orchid Is Achieved by Co-opting Two Independent Biosynthetic Pathways for Pollinator Attraction.

36. Multi-Omics and Integrated Network Analyses Reveal New Insights into the Systems Relationships between Metabolites, Structural Genes, and Transcriptional Regulators in Developing Grape Berries ( Vitis vinifera L.) Exposed to Water Deficit.

37. Genome-wide analysis of cis-regulatory element structure and discovery of motif-driven gene co-expression networks in grapevine.

38. Constructing Integrated Networks for Identifying New Secondary Metabolic Pathway Regulators in Grapevine: Recent Applications and Future Opportunities.

39. A systems-oriented analysis of the grapevine R2R3-MYB transcription factor family uncovers new insights into the regulation of stilbene accumulation.

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