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1. Flexible Organic Electronic Ion Pump for Flow-Free Phytohormone Delivery into Vasculature of Intact Plants.

2. Aspen growth is not limited by starch reserves.

3. Sucrose synthase activity is not required for cellulose biosynthesis in Arabidopsis.

4. CAGEs are Golgi-localized GT31 enzymes involved in cellulose biosynthesis in Arabidopsis.

5. Sucrose synthases are not involved in starch synthesis in Arabidopsis leaves.

6. Golgi-localized exo-β1,3-galactosidases involved in cell expansion and root growth in Arabidopsis .

7. OPENER Is a Nuclear Envelope and Mitochondria Localized Protein Required for Cell Cycle Progression in Arabidopsis.

8. Cellulose Synthase Stoichiometry in Aspen Differs from Arabidopsis and Norway Spruce.

9. Paramutation-like interaction of T-DNA loci in Arabidopsis.

10. Temporal analysis of sucrose-induced phosphorylation changes in plasma membrane proteins of Arabidopsis.

11. Similar protein phosphatases control starch metabolism in plants and glycogen metabolism in mammals.

12. A previously unknown maltose transporter essential for starch degradation in leaves.

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