The plant hormone auxin (indole-3-acetic acid, IAA) has a crucial role in plant development. Its spatiotemporal distribution is controlled by a combination of biosynthetic, metabolic and transport mechanisms. Four families of auxin transporters have been identified that mediate transport across the plasma or endoplasmic reticulum membrane. Here we report the discovery and the functional characterization of the first vacuolar auxin transporter. We demonstrate that WALLS ARE THIN1 (WAT1), a plant-specific protein that dictates secondary cell wall thickness of wood fibres, facilitates auxin export from isolated Arabidopsis vacuoles in yeast and in Xenopus oocytes. We unambiguously identify IAA and related metabolites in isolated Arabidopsis vacuoles, suggesting a key role for the vacuole in intracellular auxin homoeostasis. Moreover, local auxin application onto wat1 mutant stems restores fibre cell wall thickness. Our study provides new insight into the complexity of auxin transport in plants and a means to dissect auxin function during fibre differentiation. The plant hormone auxin is essential for plant development and growth and is transported across cellular membranes via specialized transporter proteins. In this study, Ranocha et al. identify the first vacuolar auxin transporter, WAT1, suggesting an involvement of the vacuole in auxin signalling.
Arabidopsis WAT1 is a vacuolar auxin transport facilitator required for auxin homoeostasis
Philippe Ranocha,O. Dima,R. Nagy,Judith Felten,C. Corratgé-Faillie,O. Novák,Kris Morreel,B. Lacombe,Y. Martinez,Stephanie Pfrunder,Xu Jin,J. Renou,J. Thibaud,K. Ljung,U. Fischer,E. Martinoia,W. Boerjan,D. Goffner
Published 2013 in Nature Communications
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- Publication year
2013
- Venue
Nature Communications
- Publication date
2013-10-16
- Fields of study
Biology, Medicine, Environmental Science
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Semantic Scholar, PubMed
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