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1. Artificial cavernosa-like tissue based on multibubble Matrigel and a human corpus cavernous fibroblast scaffold

2. Detection, distribution, and functions of RNA N6-methyladenosine (m6A) in plant development and environmental signal responses

3. Dissection of quantitative trait nucleotides and candidate genes associated with agronomic and yield-related traits under drought stress in rapeseed varieties: integration of genome-wide association study and transcriptomic analysis

4. Integration of genome-wide association studies, metabolomics, and transcriptomics reveals phenolic acid- and flavonoid-associated genes and their regulatory elements under drought stress in rapeseed flowers

5. Research progress on the physiological response and molecular mechanism of cold response in plants

6. Genetic breakthroughs in the Brassica napus–Sclerotinia sclerotiorum interactions

7. Physiological and comparative transcriptome analyses reveal the mechanisms underlying waterlogging tolerance in a rapeseed anthocyanin-more mutant

8. Optimization of Early Antimicrobial Strategies for Lung Transplant Recipients Based on Metagenomic Next-Generation Sequencing

9. Long-chain acyl-CoA synthetase 2 is involved in seed oil production in Brassica napus

10. Genome-Wide Prediction, Functional Divergence, and Characterization of Stress-Responsive BZR Transcription Factors in B. napus

11. Plant Disease Resistance-Related Signaling Pathways: Recent Progress and Future Prospects

12. Functional Characterization of the Cystine-Rich-Receptor-like Kinases (CRKs) and Their Expression Response to Sclerotinia sclerotiorum and Abiotic Stresses in Brassica napus

13. Insights Into the Molecular Evolution of AT-Hook Motif Nuclear Localization Genes in Brassica napus

14. Mechanism and Regulation of Silique Dehiscence, Which Affects Oil Seed Production

15. Association of BrERF72 with methyl jasmonate-induced leaf senescence of Chinese flowering cabbage through activating JA biosynthesis-related genes

16. Recent Advances in Mechanisms of Plant Defense to Sclerotinia sclerotiorum

17. BnaMPK3 Is a Key Regulator of Defense Responses to the Devastating Plant Pathogen Sclerotinia sclerotiorum in Oilseed Rape

18. Long Chain Acyl-Coenzyme A Synthetase 4 (BnLACS4) Gene from Brassica napus Enhances the Yeast Lipid Contents

19. Activation of the Transcription of BrGA20ox3 by a BrTCP21 Transcription Factor Is Associated with Gibberellin-Delayed Leaf Senescence in Chinese Flowering Cabbage during Storage

20. BrTCP7 Transcription Factor Is Associated with MeJA-Promoted Leaf Senescence by Activating the Expression of BrOPR3 and BrRCCR

21. Transcriptome Analysis Comparison of Lipid Biosynthesis in the Leaves and Developing Seeds of Brassica napus.

23. BrWRKY65, a WRKY Transcription Factor, Is Involved in Regulating Three Leaf Senescence-Associated Genes in Chinese Flowering Cabbage

24. Detection, distribution, and functions of RNA N6-methyladenosine (m6A) in plant development and environmental signal responses.

25. Dissection of quantitative trait nucleotides and candidate genes associated with agronomic and yield-related traits under drought stress in rapeseed varieties: integration of genomewide association study and transcriptomic analysis.

27. Integration of genome-wide association studies, metabolomics, and transcriptomics reveals phenolic acid- and flavonoid-associated genes and their regulatory elements under drought stress in rapeseed flowers.

28. Development and application of molecular markers for TSW (thousand-seed weight) related gene BnaGRF7.C02 in Brassica napus

29. CRISPR-mediated BnaIDA editing prevents silique shattering, floral organ abscission, and spreading of Sclerotinia sclerotiorum in Brassica napus

30. The trifecta of disease avoidance, silique shattering resistance and flowering period elongation achieved by the BnaIDA editing in Brassica napus

31. Molecular Analysis Associated with Early Flowering Mutant in Brassica napus

32. Sclerotinia Stem Rot Resistance in Rapeseed: Recent Progress and Future Prospects

33. Impact of exercise dosages based on American College of Sports Medicine recommendations on lipid metabolism in patients after PCI: a systematic review and meta-analysis of randomized controlled trials

34. Arabidopsis GDSL1 overexpression enhances rapeseed Sclerotinia sclerotiorum resistance and the functional identification of its homolog in Brassica napus

35. Candidate genes-association study to identify loci related to oleic acid in Brassica napus using SNP markers and their heterologous expression in yeast

36. Long-chain acyl-CoA synthetase 2 is involved in seed oil production in Brassica napus

37. Insights Into the Molecular Evolution of AT-Hook Motif Nuclear Localization Genes in Brassica napus

38. Genome-wide analysis and functional characterization of the DELLA gene family associated with stress tolerance in B. napus

39. Characterization of a Rapeseed Anthocyanin-More Mutant with Enhanced Resistance to Sclerotinia sclerotiorum

40. A NAC transcription factor, NOR-like1, is a new positive regulator of tomato fruit ripening

41. Down-regulation of MANNANASE7 gene in Brassica napus L. enhances silique dehiscence-resistance

42. Research progress on the source, production, and anti-cancer mechanisms of paclitaxel

43. Mechanism and Regulation of Silique Dehiscence, Which Affects Oil Seed Production

44. Four Dawson POM-based inorganic-organic supramolecular compounds for proton conduction, electrochemical and photocatalytic activity

45. Progress in Structure Determination, Reaction and Classification of Organic Compounds

46. BrNAC055, a Novel Transcriptional Activator, Regulates Leaf Senescence in Chinese Flowering Cabbage by Modulating Reactive Oxygen Species Production and Chlorophyll Degradation

47. A NAC transcription factor BrNAC087 is involved in gibberellin-delayed leaf senescence in Chinese flowering cabbage

48. Oilseed rape (Brassica napus L.) pod shatter resistance and its relationship with whole plant and pod characteristics

49. Exogenous melatonin maintains leaf quality of postharvest Chinese flowering cabbage by modulating respiratory metabolism and energy status

50. Down-regulation of BnDA1, whose gene locus is associated with the seeds weight, improves the seeds weight and organ size in Brassica napus

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