Cellular localization of chloride channels from rice plant
スポンサーリンク
概要
著者
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Fukuda Atsunori
National Inst. Of Agrobiological Sci.
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NAKAMURA Atsuko
Institute of Biological Sciences, University of Tsukuba
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NAKAMURA Atsuko
Inst. Biol. Sci., Tsukuba Univ.
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Fukuda Atsunori
National Institute Of Agrobiological Sciences
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Sakai Shingo
Graduate School Of Life And Environmental Sciences University Of Tsukuba
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Sakai Shingo
Inst. Biol. Sci. Univ. Tsukuba
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Sakai Shingo
Inst. Biol. Sci. Tukuba Univ.
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Nakamura Atsuko
Institute Of Biological Sciences University Of Tsukuba
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Nakamura Atsuko
Inst. Biol. Science Univ.
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Fukuda Atunori
Inst. Biol. Science, Univ.
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Tanaka Yoshiyuki
Inst. Biol. Science, Univ.
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Tanaka Yoshiyuki
National Institute Of Agrobiological Sciences
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Sakai Shingo
Inst. Biol. Sci. Tsukuba Univ.
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Fukuda Atunori
National Institute Of Agrobiological Sciences
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Sakai Shingo
Inst. Bio. Sci. Tsukuba Univ.
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SAKAI Shingo
Inst. Bio. Sci. , Tsukuba Univ.
関連論文
- Function, Intracellular Localization and the Importance in Salt Tolerance of a Vacuolar Na^+/H^+ Antiporter from Rice
- THE FUNCTIONAL ANALYSIS OF THE RICE Na^+/H^+ ANTIPORTER GENE
- Molecular Cloning, Functional Expression and Subcellular Localization of Two Putative Vacuolar Voltage-gated Chloride Channels in Rice (Oryza sativa L.)
- Na^+/H^+ Antiporter in Tonoplast Vesicles from Rice Roots
- Modulation of Vacuolar H^+-Pumps and Aquaporin by Phytohormones in Rice Seedling Leaf Sheaths(Biochemistry/Molecular Biology)
- Molecular cloning and characterization of mangrove Na^+/H^+ antiporter cDNA
- INTERCELLULAR LOCATION AND ESTIMATION OF CHLORIDE CHANNELS FROM RICE
- Monitoring of the genes induced by salt stress in rice
- MOLECULAR CLONING OF Na^+/H^+ ANTIPORTER GENES IN Hordeum vulgare AND Salsola komarovi
- Cellular localization of chloride channels from rice plant
- MOLECULAR CLONING OF A GENE (OsNHX1) HOMOLOGOUS TO Na^+/H^+ EXCHANGER Oryza sativa
- Molecular cloning and expression of cDNAl encoding the rice chloride channel
- Expression of Two 1-Aminocyclopropane-1-Carboxylate Synthase Genes, CS-ACS1 and CS-ACS2, Correlated with Sex Phenotypes in Cucumber plants (Cucumis sativus L. )
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