The Putative Plasma Membrane Na+/H+ Antiporter SOS1 Controls Long-Distance Na+ Transport in Plants
Top Cited Papers
Open Access
- 1 February 2002
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 14 (2) , 465-477
- https://doi.org/10.1105/tpc.010371
Abstract
The salt tolerance locus SOS1 from Arabidopsis has been shown to encode a putative plasma membrane Na+/H+ antiporter. In this study, we examined the tissue-specific pattern of gene expression as well as the Na+ transport activity and subcellular localization of SOS1. When expressed in a yeast mutant deficient in endogenous Na+ transporters, SOS1 was able to reduce Na+ accumulation and improve salt tolerance of the mutant cells. Confocal imaging of a SOS1–green fluorescent protein fusion protein in transgenic Arabidopsis plants indicated that SOS1 is localized in the plasma membrane. Analysis of SOS1 promoter–β-glucuronidase transgenic Arabidopsis plants revealed preferential expression of SOS1 in epidermal cells at the root tip and in parenchyma cells at the xylem/symplast boundary of roots, stems, and leaves. Under mild salt stress (25 mM NaCl), sos1 mutant shoot accumulated less Na+ than did the wild-type shoot. However, under severe salt stress (100 mM NaCl), sos1 mutant plants accumulated more Na+ than did the wild type. There also was greater Na+ content in the xylem sap of sos1 mutant plants exposed to 100 mM NaCl. These results suggest that SOS1 is critical for controlling long-distance Na+ transport from root to shoot. We present a model in which SOS1 functions in retrieving Na+ from the xylem stream under severe salt stress, whereas under mild salt stress it may function in loading Na+ into the xylem.Keywords
This publication has 30 references indexed in Scilit:
- Plant salt toleranceTrends in Plant Science, 2001
- sas1, an Arabidopsis Mutant Overaccumulating Sodium in the Shoot, Shows Deficiency in the Control of the Root Radial Transport of SodiumPlant Cell, 2001
- Genetic Analysis of Plant Salt Tolerance Using ArabidopsisPlant Physiology, 2000
- Arabidopsis thaliana and Saccharomyces cerevisiae NHX1 genes encode amiloride sensitive electroneutral Na+/H+ exchangersBiochemical Journal, 2000
- Salt Tolerance Conferred by Overexpression of a Vacuolar Na + /H + Antiport in ArabidopsisScience, 1999
- The Nhal antiporter of Saccharomyces cerevisiae mediates sodium and potassium eft: luxMicrobiology, 1998
- Novel Localization of a Na+/H+ Exchanger in a Late Endosomal Compartment of YeastJournal of Biological Chemistry, 1998
- Reduced Na+ Uptake in the NaCl-Hypersensitive sos1 Mutant of Arabidopsis thalianaPlant Physiology, 1997
- SOS1, a Genetic Locus Essential for Salt Tolerance and Potassium Acquisition.Plant Cell, 1996
- Sodium-Driven Potassium Uptake by the Plant Potassium Transporter HKT1 and Mutations Conferring Salt ToleranceScience, 1995