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1. Unraveling cell wall polysaccharides during blueberry ripening: insights into the roles of rhamnogalacturonan-I and arabinogalactan proteins in fruit firmness.

2. Mucilage extracted from Chilean papaya seeds is enriched with homogalacturonan domains.

3. A novel pectin methylesterase inhibitor, PMEI3, in common bean suggests a key role of pectin methylesterification in Pseudomonas resistance.

4. GoSAMT s are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells.

6. Golgi-localized putative S-adenosyl methionine transporters required for plant cell wall polysaccharide methylation.

7. Pre-Anthesis Cytokinin Applications Increase Table Grape Berry Firmness by Modulating Cell Wall Polysaccharides.

8. Transport of UDP-rhamnose by URGT2, URGT4, and URGT6 modulates rhamnogalacturonan-I length.

9. Functional Interchangeability of Nucleotide Sugar Transporters URGT1 and URGT2 Reveals That urgt1 and urgt2 Cell Wall Chemotypes Depend on Their Spatio-Temporal Expression.

10. New steps in mucilage biosynthesis revealed by analysis of the transcriptome of the UDP-rhamnose/UDP-galactose transporter 2 mutant.

11. Pectin Methylesterases Modulate Plant Homogalacturonan Status in Defenses against the Aphid Myzus persicae .

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

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

14. The inside and outside: topological issues in plant cell wall biosynthesis and the roles of nucleotide sugar transporters.

15. Understanding polysaccharide production and properties using seed coat mutants: future perspectives for the exploitation of natural variants.

16. Local evolution of seed flotation in Arabidopsis.

17. PECTIN METHYLESTERASE INHIBITOR6 promotes Arabidopsis mucilage release by limiting methylesterification of homogalacturonan in seed coat epidermal cells.

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