Kawai Shigenao | Faculty Of Agriculture Iwate University
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概要
関連著者
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Kawai Shigenao
Faculty Of Agriculture Iwate University
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Kitajima Nobuyuki
Fujita Corporation
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Kawai Shigenao
Iwate Univ. Morioka
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Alam Shah
Faculty Of Agriculture Iwate University
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Kamei Shigeru
Faculty Of Agriculture Iwate University
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Kondo Toshihito
Fujita Corporation
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Alam Shah
岩手大農
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Kamei Shigeru
岩大農
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Kamei S
Faculty Of Agriculture Iwate University
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Kamei Shigeru
Iwate Univ. Morioka Jpn
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Alam S
岩大農
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SUGAWARA Reiko
Fujita Corporation
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AKIHA Fumihito
Laboratory of Radio Isotope
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Akiha Fumihito
Laboratory Of Radio Isotope Iwate University
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Shaibur Molla
The United Graduate School Of Agricultural Sciences Iwate University
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Kawai Shigenao
岩大農
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Ladouceur Antoine
Iwate Univ. Morioka Jpn
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Ladouceur Antoine
The United Graduate School Of Agricultural Sciences
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Kawai Shigenao
Fac. Agric., Iwate Univ.
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IMAMUL HUQ
Bangladesh-Australia Centre for Environmental Research (BACER-DU), University of Dhaka
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Kawai Shigenao
Iwate U. Fac. Agric.
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Huq Imamul
Dhaka Univ.
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Imamul Huq
Bangladesh-australia Centre For Environmental Research Department Of Soil Water And Environment Univ
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Imamul Huq
Bangladesh-australia Centre For Environmental Research (bacer-du) University Of Dhaka
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Kashem Abul
Fac. Agr. Iwate Univ.
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Sugawara Reiko
(株) フジタ
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Kitajima Nobuyuki
(株) フジタ
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Kondo Toshihito
(株) フジタ
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Kubota Hiroshi
Fujita Corporation
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Shaibur Rahman
岩大農
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Kubota Hiroshi
Fujita Corp.
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サブリーン シャミマ
岩手大学農学部
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Ladouceur Antoine
岩大農
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Kawai S
Iwate Univ. Morioka Jpn
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Akiha Fumihito
岩大RI総合実験室
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Nagashima Reiko
Fujita Corporation
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Ando Ryoji
Faculty Of Agriculture Iwate University
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Shaibur Rahman
Iwate Univ.
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Huq Imamul
ダッカ大土壌
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Singh Bal
Life Sciences Univ.
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Huq S.
Univ. Dhaka Dhaka Bgd
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Molla Shaibur
Iwate University
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Kudo Kazuaki
The United Graduate School Of Agricultural Sciences
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Kudo Hiroaki
Faculty Of Agriculture Iwate University
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Inoue Katsuhiro
Faculty of Agriculture, Iwate University
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Takagi Seiichi
Faculty Of Agriculture Iwate University
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Matsuda Yuuki
Faculty of Agriculture, Iwate University
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Kondo Seiichi
Faculty of Agriculture, Iwate University
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Ishizawa Ayako
Faculty of Agriculture, Iwate University
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SAIGA Suguru
Faculty of Agriculture, Iwate University
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SABREEN Shamima
Faculty of Agriculture, Iwate University
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TSUIKI Mikinori
Faculty of Agriculture, Iwate University
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TOZAWA Seitoku
Faculty of Agriculture, Iwate University
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Shah Alam
Faculty of Agriculture, Iwate University
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Rahman Muhammad
Soil Science Department National University
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Murakami Takako
Faculty of Agriculture, Iwate University
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Kuwajima Kiyoshi
Faculty of Agriculture, Iwate University
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Hirai Takeshi
Faculty of Agriculture, Iwate University
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Ishigami Masamichi
Faculty of Agriculture, Iwate University
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AKIHA Fumihito
Faculty of Agriculture and Laboratory of Radio Isotope, Iwate University
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Tozawa Seitoku
Faculty Of Agriculture Iwate University
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Sabreen Shamima
Faculty Of Agriculture Iwate University
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Tsuiki M
Faculty Of Agriculture Iwate University
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Kashem Md
Fac. Agr. Iwate Univeristy
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Tsutsumi Michio
Faculty Of Agriculture Iwate University
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Tsuiki Mikinori
Faculty Of Agriculture Iwate University
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Matsuda Yuuki
Faculty Of Agriculture Iwate University
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Ishizawa Ayako
Faculty Of Agriculture Iwate University
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Hirai Takeshi
Faculty Of Agriculture Iwate University
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Shaibur Molla
Fac. Agr. Iwate University
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HUQ S.
Department of Soil, Water and Environment, University of Dhaka
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UTTAM KUMAR
Faculty of Agriculture, Iwate University
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CELIA YOSHIMI
Faculty of Agriculture, Iwate University
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Murakami Takako
Faculty Of Agriculture Iwate University
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Molla Shaibur
Iwate U. Fac. Agric.
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Uttam Kumar
Faculty Of Agriculture Iwate University
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Celia Yoshimi
Faculty Of Agriculture Iwate University
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Kashem Abul
岩大農
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Saitoh Hirokazu
Faculty Of Agriculture Iwate University
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Kawai S
岩大 農
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Sugawarra Reiko
Fujita Corporation
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Yoshida Tsunehiro
Nihon Green & Garden Corporation
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Ishigami Masamichi
Faculty Of Agriculture Iwate University
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Shah Alam
Faculty Of Agriculture Iwate University
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Inoue Katsuhiro
Faculty Of Agriculture Iwate University
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Kondo Seiichi
Faculty Of Agriculture Iwate University
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Kuwajima Kiyoshi
Faculty Of Agriculture Iwate University
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Yoshida Tsunehiro
Nihon Green & Garden Corporation
著作論文
- Effect of supplied phytosiderophore on ^Fe absorption and translocation in Fe-deficient barley grown hydroponically in low phosphorus media(Plant Nutrition)
- 9-35 Absorption and Translocation of Fe in Barley Plant Grown hydroponically under Fe-deficient and low Phosphorus conditions : Including the Effect of Phytosiderophore
- 9-22 Physiological and mineralogical properties of Arsenic-induced-Fe-deficient barley plant
- Concentrations of Iron and Phytosiderophores in Xylem Sap of Iron-Deficient Barley Plants
- Effect of low phosphorus and iron-deficient conditions on phytosiderophore release and mineral nutrition in barley(Plant Nutrition)
- Effects of Excess Manganese and Metal Chelators on Micronutrient Concentrations in the Xylem Sap of Iron-Deficient Barley Plants
- Rapid Incorporation of ^C of Glucose into Phytosiderophores in Iron-Deficient Barley Roots
- Diurnal Variations in Absorption and Translocation of a Ferrated Phytosiderophore in Barley as Affected by Iron Deficiency(Plant Nutrition)
- Mechanism of Potassium Alleviation of Manganese Phytotoxicity in Barley Evaluated by Short-Term Absorption of Manganese-54 and Iron-59
- Mechanism of Potassium Alleviation of Manganese Phytotoxicity in Barley Evaluated by Short-Term Absorption of Manganese-54 and Iron-59 (Plant Nutrition)
- Alleviation of Manganese Toxicity and Manganese-Induced Iron Deficiency in Barley by Additional Potassium Supply in Nutrient Solution
- Effect of Iron Deficiency on the Chemical Composition of the Xylem Sap of Barley
- Metal Micronutrients in Xylem Sap, of Iron-Deficient Barley as Affected by Plant-Borne, Microbial, and Synthetic Metal Chelators
- Arsenic-iron interaction : Effect of additional iron on arsenic-induced chlorosis in barley grown in water culture(Plant Nutrition)
- Effect of arsenic on phytosiderophores and mineral nutrition of barley seedlings grown in iron-depleted medium(Plant Nutrition)
- 14 Effect of Arsenic on the Growth of Sorghum Seedlings Grown Hydroponically
- Physiological and mineralogical properties of arsenic-induced chlorosis in rice seedlings grown hydroponically(Plant Nutrition)
- EFFECT OF HyA-INTERLAYERING ON NH_4/Ca SELECTIVITY OF EXPANDABLE LAYER SILICATES
- 22-2 Use of Sequential Extraction to Assess Distribution of Heavy Meatals in Some Cd-Contaminated and Noncontaminated Soils in Japan
- Cadmium uptake in barley affected by iron concentration of the medium: Role of phytosiderophores(Plant Nutrition)
- 6-1 Mineral Absorption of High Magnesium Containing Cultivars of Italian Ryegrass and Tall Feseue.
- 16 Cadmium tolerance and uptake by accumulator Arabidopsis halleri ssp. gemmifera grown in nutrient solution
- P9-18 Abrabidopsis halleri gemmifera as a potential candidate for hyper-accumulator of cadmium and zinc
- 9-26 Effect of phytosiderophore on iron absorption and translocation in arsenic-stressed graminaceous plants : Experiment with hydroponical plants fed with iron-59
- 9-14 Inorganic and Organic Solutes of Xylem Fluid of Arsenic Stressed Barley seedlings Grown Hydroponically
- Detection of the Regions of Phytosiderophore Release from Barley Roots