Wagatsuma Tadao | Faculty Of Agriculture
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概要
関連著者
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Wagatsuma Tadao
Faculty Of Agriculture
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WAGATSUMA Tadao
Faculty of Agriculture, Yamagata University
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TAWARAYA Keitarou
Faculty of Agriculture, Yamagata University
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ISHIKAWA Satoru
National Institutes for Agro-Environmental Sciences
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Kawamura Takeshi
Faculty of Agriculture, Yamagata University
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Ishikawa Satoru
Department Of Environmental Chemistry Heavy Metal Group Soil Biochemistry Unit National Institute Fo
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Tawaraya Keitaro
Faculty Of Agriculture Yamagata University
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Tawaraya Keitarou
Faculty Of Agriculture Yamagata University
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Kawamura Takeshi
Faculty Of Agriculture Yamagata University
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KHAN Md.
Faculty of Agriculture, Yamagata University
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Khan Md.
Faculty Of Agriculture Yamagata University
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Wagatsuma Tadao
Laboratory Of Plant Nutrition And Soil Science Faculty Of Agriculture Yamagata University:united Gra
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Khan M.
Faculty Of Agriculture Yamagata University
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Tawaraya Keitaro
Faculty of Agriculture, Yamagata University
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Wagatsuma T
Faculty Of Agriculture Yamagata University
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Ishikawa Satoru
NIAES
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Tawaraya K
Yamagata Univ. Tsuruoka Jpn
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AKHTER Afrin
Faculty of Agriculture, Yamagata University
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Akhter Afrin
Faculty Of Agriculture Yamagata University
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Oyaizu Hiroshi
Department Of Applied Biological Chemistry Division Of Agriculture And Life Sciences The University
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Oyaizu Hiroshi
Graduate School Of Agricultural And Life Sciences The University Of Tokyo
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Oyaizu Hiroshi
Biotechnology Research Center University Of Tokyo
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Oyaizu Hiroshi
Department Of Global Agricultural Science Graduate School Of Agricultural And Life Sciences The Univ
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Oba Hirosuke
Faculty of Agriculture, Yamagata University
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Murayama Tetsuya
Faculty Of Agriculture Yamagata University
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Oyaizu H
Biotechnology Research Center University Of Tokyo
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Ishikawa Satoru
National Inst. Agro‐environmental Sci. Ibaraki
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Oba Hirosuke
Faculty Of Agriculture Yamagata University
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Saito Masanori
Department Of Grassland Ecology National Institute Of Livestock And Grassland Science
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Khan M.S.H.
Faculty of Agriculture, Yamagata University
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Egashira HIROAKI
Faculty of Agriculture, Yamagata University
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SAITO MASANORI
National Institute of Livestock and Grassland Science
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Chuba Masaru
Shounai Branch, Yamagata General Agricultural Research Center
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Chuba Masaru
Shounai Branch Yamagata General Agricultural Research Center
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Kanbayashi Mihoko
Faculty of Agriculture, Yamagata University
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Uemura Matsuo
Iwate Univ. Morioka Jpn
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Egashira Hiroaki
Faculty Of Agriculture Yamagata University
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Kanbayashi Mihoko
Faculty Of Agriculture Yamagata University
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Saito Masanori
National Inst. For Agro‐environmental Sci. Ibaraki Jpn
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Saito Masanori
National Inst. Agro‐environmental Sci. Ibaraki
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Saito Masanori
National Grassland Research Institute
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Rao Idupulapati
International Center For Tropical Agriculture
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WENZL Peter
Diversity Arrays
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Uemura Matsuo
Cryobiosystem Research Center, Faculty of Agriculture, Iwate University
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Mitsuhashi Wataru
Faculty of Agriculture, Yamagata University
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Murayama Tetsuya
Faculty of Agriculture, Yamagata University
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Shiono Yoshihito
Faculty of Agriculture, Yamagata University
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Wagatsuma Tadao
Faculty Of Agriculture Yamagata University
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Shiono Yoshihito
Faculty Of Agriculture Yamagata University
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Morioka Mikio
Faculty of Agriculture, Yamagata University
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Murayama Tetsuya
Department Of Bioresource Engineering Faculty Of Agriculture Yamagata University
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Mitsuhashi Wataru
Faculty Of Agriculture Yamagata University
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Nishizawa Takashi
Faculty Of Agriculture Yamagata University
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Uemura Matsuo
Cryobiosystem Research Center Faculty Of Agriculture Iwate University
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Murayama Hideki
Faculty Of Agriculture Yamagata University
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Ueki Nozomi
Faculty of Agriculture, Yamagata University
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KANEKO Minoru
Faculty of Agriculture. Yamagata University
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Ueki Nozomi
Faculty Of Agriculture Yamagata University
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Morioka Mikio
Faculty Of Agriculture Yamagata University
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Yasuda Hironori
Faculty Of Agriculture Yamagata University
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Egashira Hiroaki
Faculty Of Agriculture University Of Yamagata
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Miyajima Takeshi
Department Of Bioresource Engineering Faculty Of Agriculture Yamagata University
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Kaneko Minoru
Faculty Of Agriculture Yamagata University
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Sato Satoru
Faculty Of Agriculture Yamagata University
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Miyakawa Tokichi
Department Of Molecular Biotechnology Graduate School Of Advanced Science Of Matter Hiroshima Univer
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UEMURA Matsuo
Cryobiofrontier Research Center, Faculty of Agriculture, Iwate University
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SHIOZAWA Shinpei
Faculty of Agriculture, Yamagata University
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TOYOMASU Tomonobu
Faculty of Agriculture, Yamagata University
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UEDA Koji
Faculty of Agriculture, Yamagata University
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Saito Masanori
Department of Internal Medicine (III), Kanazawa University School of Medicine
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RAO Idupulapati
Centro Internacional de Agricultura Tropical (CIAT)
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Wenzl Peter
DArT P L
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Yamamoto Takanori
Faculty of Agriculture, Yamagata University
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Hosogoe Kazumi
Faculty of Agriculture, Yamagata University
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Maeshima Masayoshi
Graduate School of Bioagricultural Sciences, Nagoya University
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Md. Shahadat
Faculty of Agriculture, Yamagata University
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Hossain Khan
Faculty Of Agriculture Yamagata University
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Ueda Koji
Faculty of Pharmacy, Meijo University
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Yamada Kenta
Faculty Of Agriculture Yamagata University
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Barraquio W
International Rice Research Inst. Philippines
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Shinozaki Naoto
Graduate School of Agriculture and Life Sciences, The University of Tokyo
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Barraquio Wilfredo
Institute of Biology, University of Philippines
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WATANABE Shigeki
Faculty of Agriculture, Yamagata University
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VIERHEILIG Horst
Institut fur Pflanzenschutz, Universitat fur Bodenkultur Wien
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Igarashi Kiharu
Faculty Of Agriculture Yamagata University
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Uemura Matsuo
Faculty of Agriculture, Iwate University
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Kambayashi Mihoko
Faculty of Agriculture, Yamagata University
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Sekimoto Hitoshi
Utsunomiya University
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Watanabe Shigeki
Faculty Of Agriculture Yamagata University
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Maeshima Masayoshi
Graduate School Of Bioagricultural Sciences Nagoya University
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Hosogoe Kazumi
Faculty Of Agriculture Yamagata University
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Uemura Matsuo
Faculty Of Agriculture Iwate University
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Saito Masanori
Department Of Internal Medicine (iii) Kanazawa University School Of Medicine
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Wagatsuma Tadao
Faculty Of Agriculture. Yamagata University
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Takahashi Kouetsu
Faculty of Agriculture, Yamagata University
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Egasira Hiroaki
Faculty of Agriculture, Yamagata University
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Khan M.S.H
Faculty of Agriculture, Yamagata University
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Ezura Tomohiro
Faculty of Agriculture, Yamagata University
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Shinozaki Naoto
Graduate School Of Agriculture And Life Sciences The University Of Tokyo:(present Address)kagome Co.
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HAYASAKA Yasuhlro
Faculty of Agriculture. Yamagata University
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Ezura Tomohiro
Faculty Of Agriculture Yamagata University
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Sasai Kanehito
Faculty of Agriculture, Yamagata University
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EZOE Yuji
Faculty of Agriculture, Yamagata University
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YAMASAKU Keiko
Faculty of Agriculture, Yamagata University
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Vierheilig Horst
Institut Fur Pflanzenschutz Universitat Fur Bodenkultur Wien
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Takahashi Kouetsu
Faculty Of Agriculture Department Of Bioenvironment Yamagata University
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Takahashi Kouetsu
Faculty Of Agriculture Yamagata University
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Sasai Kanehito
Faculty Of Agriculture Yamagata University
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Ezoe Yuji
Faculty Of Agriculture Yamagata University
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Yamasaku Keiko
Faculty Of Agriculture Yamagata University
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Yamamoto Takanori
Faculty Of Agriculture Yamagata University
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Sekimoto Hitoshi
Utsunomiya Univ. Tochigi Jpn
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Saito Masanori
Department Of Agricultural Chemistry The University Of Tokyo
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Murai-Hatano Mari
Laboratory of Cell Dynamics, Graduate School of Bioagricultural Sciences, Nagoya University
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NISHIZAWA Takashi
Faculty of Agriculture, Yamagata University
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WAGATSUMA Tadao
Faculty of Agriculture,Yamagata University
著作論文
- Greater contribution of low-nutrient tolerance to sorghum and maize growth under combined stress conditions with high aluminum and low nutrients in solution culture simulating the nutrient status of tropical acid soils(Plant Nutrition)
- Methylene Blue Stainability of Root-Tip Protoplasts as an Indicator of Aluminum Tolerance in a Wide Range of Plant Species, Cultivars and Lines(Plant Nutrition)
- A New and Simple Technique for the Isolation of Plasma Membrane Lipids from Root-Tips(Plant Nutrition)
- Plasma Membrane Lipids Are the Powerful Components for Early Stage Aluminum Tolerance in Triticale
- Arbuscular Mycorrhizal Fungal Communities Associated with Some Pioneer Plants in the Lahar Area of Mt. Pinatubo, Philippines(Soil Biology)
- Inhibition of Pre-Symbiotic Hyphal Growth of Arbuscular Mycorrhizal Fungus Gigaspora margarita by Root Exudates of Lupinus spp.
- Semi-Quantitative Analysis of Arbuscular Mycorrhizal Colonization of Onion Roots Inoculated with Single or Mixed Species Based upon PCR-RFLP
- Arbuscular Mycorrhizal Colonization in Lupinus and Related Genera
- Effect of Concentration of Phosphate on Spore Germination and Hyphal Growth of Arbuscular Mycorrhizal Fungus, Gigaspora margarita Becker & Hall
- Effect of Phosphate Application to Arbuscular Mycorrhizal Onion on the Development and Succinate Dehydrogenase Activity of Internal Hyphae
- Formation of appressoria by the arbuscular mycorrhizal fungus Gigaspora margarita on roots of Allium cepa is linked with root age
- 9-5 Specific construction of lipid molecules for the root-tip plasma membrane of aluminum-tolerant rice cultivar : Comparative studies on resistance response to high Al conditions (48)
- P9-2 Connection of lipid composition in root-tip portion with differential aluminum tolerance between cultivars in several plant species : Comparative studies on resistance response to high aluminum conditions (51)
- P9-1 Characterization of the primary strategies for production of sorghum and maize grown in different concentrations of aluminum and nutrients : Comparative studies on resistance response to high aluminum conditions (52)
- P9-8 Characterization of the primary strategies for better sorghum production in high aluminum and low nutrients conditions mimicking typical acid soil : Comparative studies on resistance response to high aluminum conditions (49)
- 9-8 Aluminum tolerance is not the primary strategy to determine long-term growth of rice in low ionic strength medium : Comparative studies on resistance response to high aluminum conditions (47)
- 9-7 Plasma membrane lipids and its associated flavonoids controlling differential early stage aluminum tolerances in pedigree cultivers of aluminum-tolerant Sasanishiki : Comparative studies on resistance response to high aluminum conditions (46)
- DESTRUCTION PROCESS OF PLANT ROOT CELLS BY ALUMINUM
- HIGH TOXICITY OF HYDROXY-ALUMINUM POLYMER IONS TO PLANT ROOTS
- Effect of Phosphorus Application on the Contents of Amino Acids and Reducing Sugars in the Rhizosphere and VA Mycorrhizal Infection of White Clover
- CHARACTERISTICS OF UPWARD TRANSLOCATION OF ALUMINUM IN PLANTS
- EFFECT OF pH ON IONIC SPECIES OF ALUMINUM IN MEDIUM AND ON ALUMINUM TOXICITY UNDER SOLUTION CULTURE
- RELATIONSHIP BETWEEN DIFFERENTIAL ALUMINUM TOLERANCE AND PLANTINDUCED pH CHANGE OF MEDIUM AMONG BARLEY CULTIVARS
- CHARACTERIZATION OF ABSORPTION SITES FOR ALUMINUM IN THE ROOTS
- EFFECT OF NON-METABOLIC CONDITIONS ON THE UPTAKE OF ALUMINUM BY PLANT ROOTS
- Leaf herbivory by Spodoptera litura increases arbuscular mycorrhizal colonization in roots of soybean(Soil biology)
- Leaf herbivory by Spodoptera litura increases arbuscular mycorrhizal colonization in roots of soybean