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1. The maternal embrace: the protection of plant embryos.

2. Arabidopsis pollen prolyl-hydroxylases P4H4/6 are relevant for correct hydroxylation and secretion of LRX11 in pollen tubes.

3. Transcription factor NAC1 activates expression of peptidase-encoding AtCEPs in roots to limit root hair growth.

4. An elastic proteinaceous envelope encapsulates the early Arabidopsis embryo.

5. Class III Peroxidases PRX01, PRX44, and PRX73 Control Root Hair Growth in Arabidopsis thaliana.

6. Apoplastic class III peroxidases PRX62 and PRX69 promote Arabidopsis root hair growth at low temperature.

7. Proline‐rich extensin‐like receptor kinases PERK5 and PERK12 are involved in pollen tube growth.

8. Rapid vesicle replenishment after the immediately releasable pool exocytosis is tightly linked to fast endocytosis, and depends on basal calcium and cortical actin in chromaffin cells.

9. A cell surface arabinogalactan‐peptide influences root hair cell fate.

10. Arabidopsis RAD23B regulates pollen development by mediating degradation of KRP1.

11. High Auxin and High Phosphate Impact on RSL2 Expression and ROS-Homeostasis Linked to Root Hair Growth in Arabidopsis thaliana.

12. Filling the Gaps to Solve the Extensin Puzzle.

13. <italic>Arabidopsis</italic> pollen extensins LRX are required for cell wall integrity during pollen tube growth.

14. Molecular link between auxin and ROS-mediated polar growth.

16. An update on cell surface proteins containing extensin-motifs.

17. Low Sugar Is Not Always Good: Impact of Specific O-Glycan Defects on Tip Growth in Arabidopsis.

18. Complex Regulation of Prolyl-4-Hydroxylases Impacts Root Hair Expansion.

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