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Updated: Aug 6, 2026

High Resolution Quantification of Crystalline Cellulose Accumulation in Arabidopsis Roots to Monitor Tissue-specific Cell Wall Modifications
Published on: May 10, 2016
Boron-bridged GIPCs stabilize cell wall anchoring and PIN polar domains
Mingliang He1, Cheng Zhang2, Zihan Li3
1Peking University Institute of Advanced Agricultural Sciences, Shandong Laboratory of Advanced Agricultural Sciences in Weifang, Weifang, Shandong, China.
Abstract:
Boron (B) is an essential plant micronutrient whose deficiency impairs global crop yields. Glycosylinositol phosphorylceramides (GIPCs) are major lipids in the plasma membrane (PM), and PIN-FORMED (PIN) proteins mediate polar auxin transport (PAT) via asymmetric PM localization. This study demonstrates that these components are functionally linked: B cross-links nearly all GIPC series, forming physical PM-cell wall attachments visualized as Hechtian strands. B-mediated cross-linking also restricts PIN2 lateral diffusion and endocytosis, stabilizing its polar domain formation via direct GIPC-PIN2 interaction. Phenotypic evidence supports this mechanism, as both B deficiency and impaired GIPC biosynthesis phenocopy high-order pin mutants, showing defective PIN localization and diminished auxin maxima. Thus, the B-dependent, GIPC-mediated PM-cell wall continuum immobilizes PIN polar domains, enabling PAT and ensuring proper plant development and environmental adaptation.
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