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1. The Three Members of the Arabidopsis Glycosyltransferase Family 92 are Functional β-1,4-Galactan Synthases

2. The Three Members of the Arabidopsis Glycosyltransferase Family 92 are Functional β-1,4-Galactan Synthases.

3. A Golgi UDP-GlcNAc transporter delivers substrates for N-linked glycans and sphingolipids

4. A Golgi UDP-GlcNAc transporter delivers substrates for N-linked glycans and sphingolipids.

5. Multiple marker abundance profiling: combining selected reaction monitoring and data‐dependent acquisition for rapid estimation of organelle abundance in subcellular samples

6. Multiple marker abundance profiling: combining selected reaction monitoring and data-dependent acquisition for rapid estimation of organelle abundance in subcellular samples.

7. The elaborate route for UDP-arabinose delivery into the Golgi of plants

8. The elaborate route for UDP-arabinose delivery into the Golgi of plants.

9. UUAT1 Is a Golgi-Localized UDP-Uronic Acid Transporter That Modulates the Polysaccharide Composition of Arabidopsis Seed Mucilage.

10. Defective Pollen Wall 2 (DPW2) Encodes an Acyl Transferase Required for Rice Pollen Development

11. UUAT1 Is a Golgi-Localized UDP-Uronic Acid Transporter That Modulates the Polysaccharide Composition of Arabidopsis Seed Mucilage

12. Defective Pollen Wall 2 (DPW2) Encodes an Acyl Transferase Required for Rice Pollen Development.

13. A DUF-246 family glycosyltransferase-like gene affects male fertility and the biosynthesis of pectic arabinogalactans

14. Exploiting members of the BAHD acyltransferase family to synthesize multiple hydroxycinnamate and benzoate conjugates in yeast

15. Exploiting members of the BAHD acyltransferase family to synthesize multiple hydroxycinnamate and benzoate conjugates in yeast.

16. Exploiting members of the BAHD acyltransferase family to synthesize multiple hydroxycinnamate and benzoate conjugates in yeast

17. The Arabidopsis Golgi-localized GDP-L-fucose transporter is required for plant development.

18. A DUF-246 family glycosyltransferase-like gene affects male fertility and the biosynthesis of pectic arabinogalactans.

19. The Arabidopsis Golgi-localized GDP-L-fucose transporter is required for plant development

20. Exploiting members of the BAHD acyltransferase family to synthesize multiple hydroxycinnamate and benzoate conjugates in yeast

21. Engineering temporal accumulation of a low recalcitrance polysaccharide leads to increased C6 sugar content in plant cell walls

22. Engineering temporal accumulation of a low recalcitrance polysaccharide leads to increased C6 sugar content in plant cell walls.

23. The rice immune receptor XA21 recognizes a tyrosine-sulfated protein from a Gram-negative bacterium.

24. The rice immune receptor XA21 recognizes a tyrosine-sulfated protein from a Gram-negative bacterium

25. Proteome profile of the endomembrane of developing coleoptiles from switchgrass (Panicum virgatum)

26. Proteome profile of the endomembrane of developing coleoptiles from switchgrass (Panicum virgatum).

27. Identification and Characterization of a Golgi-Localized UDP-Xylose Transporter Family from Arabidopsis

28. Correction: Transgenic expression of the dicotyledonous pattern recognition receptor EFR in rice leads to ligand-dependent activation of defense responses.

29. Identification and Characterization of a Golgi-Localized UDP-Xylose Transporter Family from Arabidopsis.

30. Transgenic Expression of the Dicotyledonous Pattern Recognition Receptor EFR in Rice Leads to Ligand-Dependent Activation of Defense Responses

31. Structural characterization of a mixed-linkage glucan deficient mutant reveals alteration in cellulose microfibril orientation in rice coleoptile mesophyll cell walls

32. Structural characterization of a mixed-linkage glucan deficient mutant reveals alteration in cellulose microfibril orientation in rice coleoptile mesophyll cell walls.

33. An XA21-associated kinase (OsSERK2) regulates immunity mediated by the XA21 and XA3 immune receptors.

34. Structural and chemical characterization of hardwood from tree species with applications as bioenergy feedstocks.

35. Structural and Chemical Characterization of Hardwood from Tree Species with Applications as Bioenergy Feedstocks

36. Combining multivariate analysis and monosaccharide composition modeling to identify plant cell wall variations by Fourier Transform Near Infrared spectroscopy.

37. Combining multivariate analysis and monosaccharide composition modeling to identify plant cell wall variations by Fourier Transform Near Infrared spectroscopy

38. The Utilization of Arabidopsis Genetic Variants to Understand Cell Wall Structure and Biosynthesis

39. Towards the Plant Golgi Proteome

40. Exploiting Natural Variation in Arabidopsis thaliana to Understand Cell Wall Biosynthesis and Composition

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