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1. The Cytoskeleton and Its Role in Determining Cellulose Microfibril Angle in Secondary Cell Walls of Woody Tree Species

2. Sector analysis reveals patterns of cambium differentiation in poplar stems

3. Medium term water deficit elicits distinct transcriptome responses in Eucalyptus species of contrasting environmental origin

5. Induced somatic sector analysis of cellulose synthase (CesA) promoter regions in woody stem tissues

6. SND2, a NAC transcription factor gene, regulates genes involved in secondary cell wall development in Arabidopsis fibres and increases fibre cell area in Eucalyptus

7. Trees need closure too: Wound-induced secondary vascular tissue regeneration.

8. The Cytoskeleton and Its Role in Determining Cellulose Microfibril Angle in Secondary Cell Walls of Woody Tree Species.

9. Sector analysis reveals patterns of cambium differentiation in poplar stems.

10. Medium term water deficit elicits distinct transcriptome responses in Eucalyptus species of contrasting environmental origin.

11. PtaRHE1, a Populus tremula × Populus alba RING-H2 protein of the ATL family, has a regulatory role in secondary phloem fibre development.

12. Induced somatic sector analysis of cellulose synthase (CesA) promoter regions in woody stem tissues.

13. SND2, a NAC transcription factor gene, regulates genes involved in secondary cell wall development in Arabidopsis fibres and increases fibre cell area in Eucalyptus.

14. beta-tubulin affects cellulose microfibril orientation in plant secondary fibre cell walls.

15. Transformation of cambial tissue in vivo provides an efficient means for induced somatic sector analysis and gene testing in stems of woody plant species.

16. Agrobacterium-mediated transformation of dormant lateral buds in poplar trees reveals developmental patterns in secondary stem tissues.

17. Agrobacterium-mediated in vitro transformation of wood-producing stem segments in eucalypts.

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