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2. Wrinkled1, a ubiquitous regulator in oil accumulating tissues from Arabidopsis embryos to oil palm mesocarp.

3. Accelerating gene function discovery by rapid phenotyping of fatty acid composition and oil content of single transgenic T1 Arabidopsis and camelina seeds

4. PlantFAdb: a resource for exploring hundreds of plant fatty acid structures synthesized by thousands of plants and their phylogenetic relationships

5. Quantitative analysis of glycerol in dicarboxylic acid-rich cutins provides insights into Arabidopsis cutin structure

6. How did nature engineer the highest surface lipid accumulation among plants? Exceptional expression of acyl-lipid-associated genes for the assembly of extracellular triacylglycerol by Bayberry (Myrica pensylvanica) fruits

7. 14-3-3 protein mediates plant seed oil biosynthesis through interaction with AtWRI1

8. De Novo Fatty Acid Biosynthesis

9. A Novel Pathway for Triacylglycerol Biosynthesis Is Responsible for the Accumulation of Massive Quantities of Glycerolipids in the Surface Wax of Bayberry (Myrica pensylvanica) Fruit

10. Deletion of a C–terminal intrinsically disordered region of <scp>WRINKLED</scp> 1 affects its stability and enhances oil accumulation in Arabidopsis

11. Metabolic engineering of oilseed crops to produce high levels of novel acetyl glyceride oils with reduced viscosity, freezing point and calorific value

12. Field production, purification and analysis of high-oleic acetyl-triacylglycerols from transgenic Camelina sativa

13. Tracking synthesis and turnover of triacylglycerol in leaves

14. Investigation of Plant Species with Identified Seed Oil Fatty Acids in Chinese Literature and Analysis of Five Unsurveyed Chinese Endemic Species

15. Tweaking enzymes for exotic plant oils

16. Golgi- and Trans-Golgi Network-Mediated Vesicle Trafficking Is Required for Wax Secretion from Epidermal Cells

17. Identification of a New Class of Lipid Droplet-Associated Proteins in Plants

18. Biochemical pathways in seed oil synthesis

19. Lipid turnover during senescence

20. Disruption of plastid acyl:acyl carrier protein synthetases increases medium chain fatty acid accumulation in seeds of transgenic Arabidopsis

21. FUSCA3 activates triacylglycerol accumulation in Arabidopsis seedlings and tobacco BY2 cells

22. Pleiotropic Phenotypes of the sticky peel Mutant Provide New Insight into the Role of CUTIN DEFICIENT2 in Epidermal Cell Function in Tomato

23. Isotope labelling of Rubisco subunits providesin vivoinformation on subcellular biosynthesis and exchange of amino acids between compartments

24. Compartmentation of Triacylglycerol Accumulation in Plants

25. Rapid Kinetic Labeling of Arabidopsis Cell Suspension Cultures: Implications for Models of Lipid Export from Plastids

26. Comparative deep transcriptional profiling of four developing oilseeds

27. The seeds of green energy: Expanding the contribution of plant oils as biofuels

28. A distinct DGAT with sn -3 acetyltransferase activity that synthesizes unusual, reduced-viscosity oils in Euonymus and transgenic seeds

29. Identification of an Arabidopsis Feruloyl-Coenzyme A Transferase Required for Suberin Synthesis

30. Turnover of Fatty Acids during Natural Senescence of Arabidopsis, Brachypodium, and Switchgrass and in Arabidopsis β-Oxidation Mutants

31. The role of light in soybean seed filling metabolism

32. Plant triacylglycerols as feedstocks for the production of biofuels

33. New Connections across Pathways and Cellular Processes: Industrialized Mutant Screening Reveals Novel Associations between Diverse Phenotypes in Arabidopsis

34. Deposition and localization of lipid polyester in developing seeds of Brassica napus and Arabidopsis thaliana

35. Incorporation of Newly Synthesized Fatty Acids into Cytosolic Glycerolipids in Pea Leaves Occurs via Acyl Editing

36. Carbon conversion efficiency and central metabolic fluxes in developing sunflower (Helianthus annuus L.) embryos

37. Oil biosynthesis in a basal angiosperm: transcriptome analysis of Persea Americana mesocarp

38. Identification of multiple lipid genes with modifications in expression and sequence associated with the evolution of hydroxy fatty acid accumulation in Physaria fendleri

39. Cuticular Lipid Composition, Surface Structure, and Gene Expression in Arabidopsis Stem Epidermis

40. Rubisco without the Calvin cycle improves the carbon efficiency of developing green seeds

41. Analysis of the aliphatic monomer composition of polyesters associated with Arabidopsis epidermis: occurrence of octadeca-cis-6, cis-9-diene-1,18-dioate as the major component

42. The Capacity of Green Oilseeds to Utilize Photosynthesis to Drive Biosynthetic Processes

43. Carbon dioxide concentrations are very high in developing oilseeds

44. Metabolic Responses to the Reduction in Palmitate Caused by Disruption of the FATB Gene in Arabidopsis

45. Understanding flux in plant metabolic networks

46. Functional Genomics from a Plant Biochemist's Perspective

47. The Predicted Candidates of Arabidopsis Plastid Inner Envelope Membrane Proteins and Their Expression Profiles

48. Probing in Vivo Metabolism by Stable Isotope Labeling of Storage Lipids and Proteins in Developing Brassica napusEmbryos

49. Contrapuntal Networks of Gene Expression during Arabidopsis Seed Filling[W]

50. Carbocyclic fatty acids in plants: Biochemical and molecular genetic characterization of cyclopropane fatty acid synthesis of Sterculia foetida

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