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1. Integrity of xylan backbone affects plant responses to drought

2. Impact of xylan on field productivity and wood saccharification properties in aspen

3. Saccharification Potential of Transgenic Greenhouse- and Field-Grown Aspen Engineered for Reduced Xylan Acetylation

4. Cell Wall Acetylation in Hybrid Aspen Affects Field Performance, Foliar Phenolic Composition and Resistance to Biological Stress Factors in a Construct-Dependent Fashion

5. Hybrid Aspen Expressing a Carbohydrate Esterase Family 5 Acetyl Xylan Esterase Under Control of a Wood-Specific Promoter Shows Improved Saccharification

6. In muro deacetylation of xylan affects lignin properties and improves saccharification of aspen wood

7. Field testing of transgenic aspen from large greenhouse screening identifies unexpected winners

8. Xylan glucuronic acid side chains fix suberin-like aliphatic compounds to wood cell walls

9. Sucrose synthase determines carbon allocation in developing wood and alters carbon flow at the whole tree level in aspen

10. PcGCE is a potent elicitor of defense responses in aspen

11. Saccharification Potential of Transgenic Greenhouse- and Field-Grown Aspen Engineered for Reduced Xylan Acetylation

12. Elongation of wood fibers combines features of diffuse and tip growth

13. Expression of Cell Wall-Modifying Enzymes in Aspen for Improved Lignocellulose Processing

14. Hybrid Aspen Expressing a Carbohydrate Esterase Family 5 Acetyl Xylan Esterase Under Control of a Wood-Specific Promoter Shows Improved Saccharification

15. Expression of Cell Wall–Modifying Enzymes in Aspen for Improved Lignocellulose Processing

16. Cell wall acetylation in hybrid aspen affects field performance, foliar phenolic composition and resistance to biological stress factors in a construct-dependent fashion

17. Arabidopsis

18. Glucuronic acid in Arabidopsis thaliana xylans carries a novel pentose substituent

19. Downregulating aspen xylan biosynthetic GT43 genes in developing wood stimulates growth via reprograming of the transcriptome

20. Suppression of xylan endotransglycosylase PtxtXyn10A affects cellulose microfibril angle in secondary wall in aspen wood

21. O-Acetylation of glucuronoxylan in Arabidopsis thaliana wild type and its change in xylan biosynthesis mutants

22. Downregulation of RWA genes in hybrid aspen affects xylan acetylation and wood saccharification

23. In muro deacetylation of xylan affects lignin properties and improves saccharification of aspen wood

24. A collection of genetically engineered Populus trees reveals wood biomass traits that predict glucose yield from enzymatic hydrolysis

25. Feasibility of using atmospheric pressure matrix-assisted laser desorption/ionization with ion trap mass spectrometry in the analysis of acetylated xylooligosaccharides derived from hardwoods and Arabidopsis thaliana

26. Reactive oxygen species production and antioxidative defense system in pea root tissues treated with lead ions: mitochondrial and peroxisomal level

27. Expression of fungal acetyl xylan esterase in Arabidopsis thaliana improves saccharification of stem lignocellulose

28. Expression of a fungal glucuronoyl esterase in Populus : Effects on wood properties and saccharification efficiency

29. Populus GT43 family members group into distinct sets required for primary and secondary wall xylan biosynthesis and include useful promoters for wood modification

30. Xyloglucan endo-transglycosylase-mediated xyloglucan rearrangements in developing wood of hybrid aspen

31. Mechanical Integration of Plant Cells

32. Signaling and Cell Walls

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