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1. Comparative Pangenomic Insights into the Distinct Evolution of Virulence Factors Among Grapevine Trunk Pathogens

2. A super-pangenome of the North American wild grape species

3. HiFi chromosome-scale diploid assemblies of the grape rootstocks 110R, Kober 5BB, and 101–14 Mgt

4. The grape powdery mildew resistance loci Ren2, Ren3, Ren4D, Ren4U, Run1, Run1.2b, Run2.1, and Run2.2 activate different transcriptional responses to Erysiphe necator

5. Independent Whole-Genome Duplications Define the Architecture of the Genomes of the Devastating West African Cacao Black Pod Pathogen Phytophthora megakarya and Its Close Relative Phytophthora palmivora

6. The genetic basis of sex determination in grapes

7. Glutathione S-transferase: a candidate gene for berry color in muscadine grapes (Vitis rotundifoli a)

8. The genomic diversification of grapevine clones

9. Diploid Genome Assembly of the Wine Grape Carménère

10. Iso-Seq Allows Genome-Independent Transcriptome Profiling of Grape Berry Development

11. Transcriptomics Provides a Genetic Signature of Vineyard Site and Offers Insight into Vintage-Independent Inoculated Fermentation Outcomes

12. Diploid chromosome-scale assembly of the Muscadinia rotundifolia genome supports chromosome fusion and disease resistance gene expansion during Vitis and Muscadinia divergence

13. Fungal and bacterial communities of ‘Pinot noir’ must: effects of vintage, growing region, climate, and basic must chemistry

14. Regulation of monocot and dicot plant development with constitutively active alleles of phytochrome B

15. Profiling grapevine trunk pathogens in planta: a case for community-targeted DNA metabarcoding

16. Lipopolysaccharide O-antigen delays plant innate immune recognition of Xylella fastidiosa

17. Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum

18. Neofusicoccum parvum Colonization of the Grapevine Woody Stem Triggers Asynchronous Host Responses at the Site of Infection and in the Leaves

19. Insights into the domestication of avocado and potential genetic contributors to heterodichogamy

20. The grape powdery mildew resistance lociRen2, Ren3, Ren4D, Ren4U, Run1, Run1.2b, Run2.1, andRun2.2activate different transcriptional responses toErysiphe necator

21. Haplotype-resolved powdery mildew resistance loci reveal the impact of heterozygous structural variation on NLR genes in Muscadinia rotundifolia

22. The grape MYB24 mediates the coordination of light-induced terpene and flavonol accumulation in response to berry anthocyanin sunscreen depletion

23. Rootstock influences the effect of grapevine leafroll-associated viruses on berry development and metabolism via abscisic acid signalling

24. Transcriptomics Provides a Genetic Signature of Vineyard Site and Offers Insight into Vintage-Independent Inoculated Fermentation Outcomes

25. Diploid chromosome-scale assembly of the Muscadinia rotundifolia genome supports chromosome fusion and disease resistance gene expansion during Vitis and Muscadinia divergence

26. Transcriptomics provides a genetic signature of vineyard site with insight into vintage-independent regional wine characteristics

27. Independent Whole-Genome Duplications Define the Architecture of the Genomes of the Devastating West African Cacao Black Pod Pathogen Phytophthora megakarya and Its Close Relative Phytophthora palmivora

28. Closed‐reference metatranscriptomics enables in planta profiling of putative virulence activities in the grapevine trunk disease complex

29. The genetic basis of sex determination in grapes

30. The genetic basis of sex determination in grapevines (Vitis spp.)

31. Regulation of monocot and dicot plant development with constitutively active alleles of phytochrome B

32. The unique genome architecture of the devastating West African cacao black pod pathogen Phytophthora megakarya

33. The genomic diversification of clonally propagated grapevines

34. Iso-Seq Allows Genome-Independent Transcriptome Profiling of Grape Berry Development

35. Red blotch disease alters grape berry development and metabolism by interfering with the transcriptional and hormonal regulation of ripening

36. Phased diploid genome assembly with single-molecule real-time sequencing

37. Strategies for Sequencing and Assembling Grapevine Genomes

38. Profiling grapevine trunk pathogens in planta: A case for community-targeted DNA metabarcoding

39. Whole-genome resequencing and pan-transcriptome reconstruction highlight the impact of genomic structural variation on secondary metabolism gene clusters in the grapevine Esca pathogenPhaeoacremonium minimum

40. Closed-reference metatranscriptomics enables in planta profiling of putative virulence activities in the grapevine trunk-disease complex

41. Condition‐dependent co‐regulation of genomic clusters of virulence factors in the grapevine trunk pathogen Neofusicoccum parvum

42. An intellectual property sharing initiative in agricultural biotechnology: development of broadly accessible technologies for plant transformation

43. Hormonal and Stress Induction of the Gene Encoding Common Bean Acetyl-Coenzyme A Carboxylase

44. Comparative transcriptomics of Central Asian Vitis vinifera accessions reveals distinct defense strategies against powdery mildew

45. Uniform ripening encodes a Golden 2-like transcription factor regulating tomato fruit chloroplast development

46. An intellectual property sharing initiative in agricultural biotechnology: development of broadly accessible technologies for plant transformation

47. Wounding and pathogen infection induce a chloroplast-targeted lipoxygenase in the common bean (Phaseolus vulgaris L.)

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