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3. AtFUT4 and AtFUT6 Are Arabinofuranose-Specific Fucosyltransferases

4. Structural, mutagenic and in silico studies of xyloglucan fucosylation in Arabidopsis thaliana suggest a water‐mediated mechanism

10. Combating paraben pollution in surface waters with a variety of photocatalyzed systems: Looking for the most efficient technology

13. Epidemiological and clinical characteristics of infants admitted to hospital due to human parechovirus infections: A prospective study in Spain

14. Características epidemiológicas y clínicas de los lactantes hospitalizados por infecciones por parechovirus humanos. Estudio prospectivo en España

23. Enzymatic Synthesis of Xylan Microparticles with Tunable Morphologies

28. Human gut Bacteroidetes can utilize yeast mannan through a selfish mechanism

31. AtFUT4 and AtFUT6 Are Arabinofuranose-Specific Fucosyltransferases

32. Supp-FigS1-S8_ONeill-Rev2 – Supplemental material for Locating Methyl-Etherified and Methyl-Esterified Uronic Acids in the Plant Cell Wall Pectic Polysaccharide Rhamnogalacturonan II

37. Molecular Mechanism of Polysaccharide Acetylation by the Arabidopsis Xylan O-acetyltransferase XOAT1

40. Structure of the Xylan O-Acetyltransferase AtXOAT1 Reveals Molecular Insight into Polysaccharide Acetylation in Plants

43. At FUT4 and At FUT6 Are Arabinofuranose-Specific Fucosyltransferases.

46. Downregulation of a UDP-Arabinomutase Gene in Switchgrass (Panicum virgatum L.) Results in Increased Cell Wall Lignin While Reducing Arabinose-Glycans

48. Loss of function of folylpolyglutamate synthetase 1 reduces lignin content and improves cell wall digestibility in Arabidopsis

49. Erratum: Corrigendum: Human gut Bacteroidetes can utilize yeast mannan through a selfish mechanism

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