The SYP123–VAMP727 SNARE complex delivers secondary cell wall components for root hair shank hardening in Arabidopsis

Abstract The extended tubular shape of root hairs is established by tip growth and concomitant hardening. Here, we demonstrate that a syntaxin of plants (SYP)123–vesicle-associated membrane protein (VAMP)727-dependent secretion system delivers secondary cell wall components for hardening the subapic...

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Veröffentlicht in:The Plant cell 2023-11, Vol.35 (12), p.4347-4365
Hauptverfasser: Hirano, Tomoko, Ebine, Kazuo, Ueda, Takashi, Higaki, Takumi, Watanabe-Nakayama, Takahiro, Konno, Hiroki, Takigawa-Imamura, Hisako, Sato, Masa H
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Sprache:eng
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Zusammenfassung:Abstract The extended tubular shape of root hairs is established by tip growth and concomitant hardening. Here, we demonstrate that a syntaxin of plants (SYP)123–vesicle-associated membrane protein (VAMP)727-dependent secretion system delivers secondary cell wall components for hardening the subapical zone and shank of Arabidopsis (Arabidopsis thaliana) root hairs. We found increased SYP123 localization at the plasma membrane (PM) of the subapical and shank zones compared with the tip region in elongating root hairs. Inhibition of phosphatidylinositol (PtdIns)(3,5)P2 production impaired SYP123 localization at the PM and SYP123-mediated root hair shank hardening. Moreover, root hair elongation in the syp123 mutant was insensitive to a PtdIns(3,5)P2 synthesis inhibitor. SYP123 interacts with both VAMP721 and VAMP727. syp123 and vamp727 mutants exhibited reduced shank cell wall stiffness due to impaired secondary cell wall component deposition. Based on these results, we conclude that SYP123 is involved in VAMP721-mediated conventional secretion for root hair elongation as well as in VAMP727-mediated secretory functions for the delivery of secondary cell wall components to maintain root hair tubular morphology. The SYP123–VAMP727-mediated secretion pathway is involved in the transport of secondary cell wall components to the root hair shank for hardening in a PtdIns(3,5)P2-dependent manner.
ISSN:1040-4651
1532-298X
DOI:10.1093/plcell/koad240