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1. Protein kinase SnRK2.4 is a key regulator of aquaporins and root hydraulics in Arabidopsis.

2. Hormonal and environmental signaling pathways target membrane water transport.

3. Regulation of a plant aquaporin by a Casparian strip membrane domain protein-like.

4. Oscillating Aquaporin Phosphorylation and 14-3-3 Proteins Mediate the Circadian Regulation of Leaf Hydraulics.

5. Novel Aquaporin Regulatory Mechanisms Revealed by Interactomics.

6. Aquaporins in Plants.

7. The calcium-dependent protein kinase CPK7 acts on root hydraulic conductivity.

8. Plant aquaporins: roles in plant physiology.

9. Coordinated post-translational responses of aquaporins to abiotic and nutritional stimuli in Arabidopsis roots.

10. Regulation of Arabidopsis leaf hydraulics involves light-dependent phosphorylation of aquaporins in veins.

11. Mechanisms and effects of retention of over-expressed aquaporin AtPIP2;1 in the endoplasmic reticulum.

12. The cellular dynamics of plant aquaporin expression and functions.

13. Multiple phosphorylations in the C-terminal tail of plant plasma membrane aquaporins: role in subcellular trafficking of AtPIP2;1 in response to salt stress.

14. Methylation of aquaporins in plant plasma membrane.

15. A proteomic study reveals novel insights into the diversity of aquaporin forms expressed in the plasma membrane of plant roots.

16. Role of a single aquaporin isoform in root water uptake.

17. Multiple phosphorylations in the C-terminal tail of plant plasma membrane aquaporins: role in subcellular trafficking of AtPIP2;1 in response to salt stress

18. Methylation of aquaporins in plant plasma membrane

19. Root Membrane Ubiquitinome under Short-Term Osmotic Stress.

20. O-Carboxyl- and N-Methyltransferases Active on Plant Aquaporins.

21. Plant Aquaporins: Membrane Channels with Multiple Integrated Functions.

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