Golgi- and Trans-Golgi Network-Mediated Vesicle Trafficking Is Required for Wax Secretion from Epidermal Cells

Author:

McFarlane Heather E.1,Watanabe Yoichiro1,Yang Weili2,Huang Yan1,Ohlrogge John2,Samuels A. Lacey1

Affiliation:

1. Department of Botany (H.E.M., Y.W., Y.H., A.L.S.) and Michael Smith Laboratories (Y.H.), University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4; and

2. Department of Plant Biology, Michigan State University, East Lansing, Michigan 48824 (W.Y., J.O.)

Abstract

Abstract Lipid secretion from epidermal cells to the plant surface is essential to create the protective plant cuticle. Cuticular waxes are unusual secretory products, consisting of a variety of highly hydrophobic compounds including saturated very-long-chain alkanes, ketones, and alcohols. These compounds are synthesized in the endoplasmic reticulum (ER) but must be trafficked to the plasma membrane for export by ATP-binding cassette transporters. To test the hypothesis that wax components are trafficked via the endomembrane system and packaged in Golgi-derived secretory vesicles, Arabidopsis (Arabidopsis thaliana) stem wax secretion was assayed in a series of vesicle-trafficking mutants, including gnom like1-1 (gnl1-1), transport particle protein subunit120-4, and echidna (ech). Wax secretion was dependent upon GNL1 and ECH. Independent of secretion phenotypes, mutants with altered ER morphology also had decreased wax biosynthesis phenotypes, implying that the biosynthetic capacity of the ER is closely related to its structure. These results provide genetic evidence that wax export requires GNL1- and ECH-dependent endomembrane vesicle trafficking to deliver cargo to plasma membrane-localized ATP-binding cassette transporters.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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