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1. An atlas of Arabidopsis protein S-acylation reveals its widespread role in plant cell organization and function.

2. A PXY-Mediated Transcriptional Network Integrates Signaling Mechanisms to Control Vascular Development in Arabidopsis.

3. Organ-specific genetic interactions between paralogues of the PXY and ER receptor kinases enforce radial patterning in Arabidopsis vascular tissue.

4. An essential role for abscisic acid in the regulation of xylem fibre differentiation.

5. Exploiting CELLULOSE SYNTHASE (CESA) Class Specificity to Probe Cellulose Microfibril Biosynthesis.

6. Functional Analysis of Cellulose Synthase (CESA) Protein Class Specificity.

7. Realizing pipe dreams - a detailed picture of vascular development.

8. S-Acylation of the cellulose synthase complex is essential for its plasma membrane localization.

9. SPIRAL2 determines plant microtubule organization by modulating microtubule severing.

10. Arabidopsis genes IRREGULAR XYLEM (IRX15) and IRX15L encode DUF579-containing proteins that are essential for normal xylan deposition in the secondary cell wall.

11. Absence of branches from xylan in Arabidopsis gux mutants reveals potential for simplification of lignocellulosic biomass.

12. Arabidopsis - a powerful model system for plant cell wall research.

13. Elucidating the mechanisms of assembly and subunit interaction of the cellulose synthase complex of Arabidopsis secondary cell walls.

14. Characterization of IRX10 and IRX10-like reveals an essential role in glucuronoxylan biosynthesis in Arabidopsis.

15. Comparison of five xylan synthesis mutants reveals new insight into the mechanisms of xylan synthesis.

16. Severing at sites of microtubule crossover contributes to microtubule alignment in cortical arrays.

17. Cell walls: monitoring integrity with the kinase.

18. PXY, a receptor-like kinase essential for maintaining polarity during plant vascular-tissue development.

19. hca: an Arabidopsis mutant exhibiting unusual cambial activity and altered vascular patterning.

20. Identification of novel genes in Arabidopsis involved in secondary cell wall formation using expression profiling and reverse genetics.

21. The irregular xylem 2 mutant is an allele of korrigan that affects the secondary cell wall of Arabidopsis thaliana.

22. Control of cellulose synthase complex localization in developing xylem.

23. Isolation of COV1, a gene involved in the regulation of vascular patterning in the stem of Arabidopsis.

24. Structure of cellulose-deficient secondary cell walls from the irx3 mutant of Arabidopsis thaliana.

26. Organ-specific genetic interactions between paralogues of the PXY and ER receptor kinases enforce radial patterning in Arabidopsis vascular tissue.

27. WOX4 and WOX14 act downstream of the PXY receptor kinase to regulate plant vascular proliferation independently of any role in vascular organisation.

28. The PXY-CLE41 receptor ligand pair defines a multifunctional pathway that controls the rate and orientation of vascular cell division.

29. Cloning and characterization of irregular xylem4 (irx4): a severely lignin-deficient mutant of Arabidopsis.

30. BOTERO1 is required for normal orientation of cortical microtubules and anisotropic cell expansion in Arabidopsis.

31. Investigating the function of Arabidopsis KOD ; and, Developing a microcontroller based system for continuous and high throughput quantification of plant cell death by ion leakage

32. The gapped xylem mutant identifies a common regulatory step in secondary cell wall deposition.

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