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1. Turgor pressure change in stomatal guard cells arises from interactions between water influx and mechanical responses of their cell walls

2. Stomata-mediated interactions between plants, herbivores, and the environment

3. Post-Synthetic Reduction of Pectin Methylesterification Causes Morphological Abnormalities and Alterations to Stress Response in Arabidopsis thaliana

4. Balancing Strength and Flexibility: How the Synthesis, Organization, and Modification of Guard Cell Walls Govern Stomatal Development and Dynamics

6. PECTATE LYASE LIKE12 patterns the guard cell wall to coordinate turgor pressure and wall mechanics for proper stomatal function in Arabidopsis

7. Automated 3D segmentation of guard cells enables volumetric analysis of stomatal biomechanics

8. The stomatal flexoskeleton: how the biomechanics of guard cell walls animate an elastic pressure vessel

9. Synergistic Pectin Degradation and Guard Cell Pressurization Underlie Stomatal Pore Formation

10. Silencing the alarm: an insect salivary enzyme closes plant stomata and inhibits volatile release

11. Post-Synthetic Reduction of Pectin Methylesterification Causes Morphological Abnormalities and Alterations to Stress Response in Arabidopsis thaliana

12. Reproducibility of Fluorescent Expression from Engineered Biological Constructs in E. coli

13. Synergistic Pectin Degradation and Guard Cell Pressurization Underlie Stomatal Pore Formation.

14. Natural variation of TBR confers plant zinc toxicity tolerance through root cell wall pectin methylesterification.

16. Expression Pattern and Functional Analyses of Arabidopsis Guard Cell-Enriched GDSL Lipases.

18. Silencing the alarm: an insect salivary enzyme closes plant stomata and inhibits volatile release.

19. stomatal flexoskeleton: how the biomechanics of guard cell walls animate an elastic pressure vessel.

20. Balancing Strength and Flexibility: How the Synthesis, Organization, and Modification of Guard Cell Walls Govern Stomatal Development and Dynamics.

22. Post-Synthetic Reduction of Pectin Methylesterification Causes Morphological Abnormalities and Alterations to Stress Response in Arabidopsis thaliana.

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