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Function, Intracellular Localization and the Importance in Salt Tolerance of a Vacuolar Na+/H+ Antiporter from Rice

Plant and Cell Physiology · 2004 · Vol. 45(2) · pp. 146–159
Atsunori FukudaAtsuko NakamuraAkemi TagiriHiroshi TanakaAkio MiyaoHirohiko HirochikaYoshiyuki Tanaka

Abstract

We examined the function and intracellular localization of the product of the Na(+)/H(+) antiporter gene (OsNHX1) cloned from rice (Oryza sativa). OsNHX1 has the ability to suppress Na(+), Li(+) and hygromycin sensitivity of yeast nhx1 mutants and sensitivity to a high K(+) concentration, a novel phenotype of the nhx1 mutants. Analysis using rice cells expressing a fusion protein of OsNHX1 and green fluorescent protein and Western blot analysis using antibodies specific for OsNHX1 confirmed the localization of OsNHX1 on the tonoplasts. These results indicate that the OsNHX1 gene encodes a vacuolar (Na(+), K(+))/H(+) antiporter. Treatment with high concentrations of NaCl and KCl increased the transcript levels of OsNHX1 in rice roots and shoots. In addition, overexpression of OsNHX1 improved the salt tolerance of transgenic rice cells and plants. These results suggest that OsNHX1 on the tonoplasts plays important roles in the compartmentation of Na(+) and K(+) highly accumulated in the cytoplasm into the vacuoles, and the amount of the antiporter is one of the most important factors determining salt tolerance in rice.

Plant Stress Responses and TolerancePlant nutrient uptake and metabolismPlant Molecular Biology ResearchAntiporterVacuoleOryza sativaGenetically modified riceMutantIntracellularBiologyCell biologyCytoplasmWestern blot

MeSH terms

Cell CompartmentationCytoplasmPotassium ChlorideRecombinant Fusion ProteinsOryzaRNA, MessengerSaltsSodium ChlorideVacuolesUp-RegulationSodium-Hydrogen ExchangersGene Expression Regulation, PlantPlant RootsPlant ShootsCation Transport Proteins

Funding

  • Ministry of Agriculture, Forestry and Fisheries
Citations
451
FWCI
27.98
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Function, Intracellular Localization and the Importance in Salt Tolerance of a Vacuolar Na+/H+ Antiporter from Rice · Scinovex