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A Distinct Pathway for Polar Exocytosis in Plant Cell Wall Formation
Author(s) -
Hao Wang,
Xiaohong Zhuang,
Xiangfeng Wang,
Angus Ho Yin Law,
Teng Zhao,
Shengwang Du,
M. M. T. Loy,
Liwen Jiang
Publication year - 2016
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.16.00754
Subject(s) - golgi apparatus , exocytosis , cytokinesis , microbiology and biotechnology , cell plate , secretory pathway , secretion , brefeldin a , organelle , tip growth , biology , immunogold labelling , exocyst , cell polarity , chemistry , cell , cell division , biochemistry , ultrastructure , botany , endoplasmic reticulum , pollen , pollen tube , pollination
Post-Golgi protein sorting and trafficking to the plasma membrane (PM) is generally believed to occur via the trans-Golgi network (TGN). In this study using Nicotiana tabacum pectin methylesterase (NtPPME1) as a marker, we have identified a TGN-independent polar exocytosis pathway that mediates cell wall formation during cell expansion and cytokinesis. Confocal immunofluorescence and immunogold electron microscopy studies demonstrated that Golgi-derived secretory vesicles (GDSVs) labeled by NtPPME1-GFP are distinct from those organelles belonging to the conventional post-Golgi exocytosis pathway. In addition, pharmaceutical treatments, superresolution imaging, and dynamic studies suggest that NtPPME1 follows a polar exocytic process from Golgi-GDSV-PM/cell plate (CP), which is distinct from the conventional Golgi-TGN-PM/CP secretion pathway. Further studies show that ROP1 regulates this specific polar exocytic pathway. Taken together, we have demonstrated an alternative TGN-independent Golgi-to-PM polar exocytic route, which mediates secretion of NtPPME1 for cell wall formation during cell expansion and cytokinesis and is ROP1-dependent.

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