Saitoh Yasushi | United Graduate School Of Agricultural Sciences Iwate Univ.
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概要
関連著者
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Saitoh Yasushi
United Graduate School Of Agricultural Sciences Iwate Univ.
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Tsutsumi Ken-ichi
United Graduate School Of Agricultural Sciences Iwate Univ.
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Tsutsumi Ken-ichi
United Graduate School of Agricultural Sciences, Iwate University
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Yamashita Tetsuro
Department Of Chemical Engineering Faculty Of Engineering Iwate University
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Hikage Takashi
Cryobiosystem Research Center Iwate University
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Kume Kohei
United Graduate School of Agricultural Sciences, Iwate University
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SAITOH Yasushi
Cryobiosystem Research Center, Iwate University
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TSUTSUMI Ken-ichi
Cryobiosystem Research Center, Iwate University
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Yamashita Tetsuro
Department Of Agro-bioscience Faculty Of Agriculture Iwate University
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Tsutsumi Ken-ichi
Cryobiosystem Research Center Iwate University
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Saitoh Yasushi
Cryobiosystem Research Center Iwate University
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Saitoh Yasushi
United Graduate School Of Agricultural Sciences Iwate University
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Tsutsumi Ken-ichi
United Graduate School Of Agricultural Sciences Iwate University
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SATO Tadashi
Department of Environmental Science, Faculty of Science, Niigata University
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FUJIOKA Tomoaki
Department of Urology, Iwate Medical University
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Fujioka Tomoaki
Department Of Urology Iwate Medical University School Of Medicine
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MATSUKAWA Kazushige
Cryobiosystem Research Center, Iwate University
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OGATA Mika
Cryobiosystem Research Center, Iwate University
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MINAMI Hiroyuki
Cryobiosystem Research Center, Iwate University
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SHIMOTAI Yoshitaka
Cryobiosystem Research Center, Iwate University
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OUCHI Atsushi
Department of Urology, Iwate Medical University School of Medicine
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TSUTSUMI Reiko
Department of Virology, Iwate Medical University School of Medicine
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Takahashi Miho
Cryobiosystem Research Center, Faculty of Agriculture, Iwate University
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Endou Motonobu
Department of Agro-biosciences, Faculty of Agriculture, Iwate University
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Minami Hiroyuki
Cryobiosystem Research Center Iwate University
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Ogata Mika
Cryobiosystem Research Center Iwate University
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Ouchi Atsushi
Department Of Radiology Sapporo Medical University School Of Medicine
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Ouchi Atsushi
Department Of Urology Iwate Medical University School Of Medicine
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Tsutsumi Reiko
Department Of Virology Iwate Medical University School Of Medicine
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Tsutsumi Reiko
Department Of Bacteriology Iwate Medical University
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Endou Motonobu
Department Of Agro-biosciences Faculty Of Agriculture Iwate University
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Fujioka Tomoaki
Department Of Urology And Physiology Ii Iwate Medical University School Of Medicine
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Matsukawa Kazushige
Cryobiosystem Research Center Iwate University
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Kume Kohei
United Graduate School Of Agricultural Sciences Iwate University
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Hidaka Soh
Department of Crop Breeding. Tohoku Nationa!Agricultural Experiment Station
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WANG Ying
United Graduate School of Agricultural Sciences, Iwate University
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TAMURA Kohya
Cryobiosystem Research Center, Iwate University
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Hidaka Soh
Department Of Crop Breeding National Agricultural Research Center For Tohoku Region
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Tamura Kohya
Cryobiosystem Research Center Iwate University
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Shimotai Yoshitaka
Cryobiosystem Research Center Iwate University
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Sato Tadashi
Department Of Environmental Science Faculty Of Science Niigata University
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Wang Ying
United Graduate School Of Agricultural Sciences Iwate University
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Sato Tadashi
Department Of Biochemistry Research Laboratory Of Applied Biochemistry Tanabe Seiyaku Co. Ltd.
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Takahashi Miho
Cryobiosystem Research Center Faculty Of Agriculture Iwate University
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Sato Tadashi
Department Of Ecology And Evolutionary Biology Graduate School Of Life Science Tohoku University
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Sato Tadashi
Department Of Applied Chemistry Faculty Of Science And Engineering Waseda Uiversity
著作論文
- TAS1 trans-Acting siRNA Targets Are Differentially Regulated at Low Temperature, and TAS1 trans-Acting siRNA Mediates Temperature-Controlled At1g51670 Expression
- Antiproliferative Activity of Root Extract from Gentian Plant (Gentiana triflora) on Cultured and Implanted Tumor Cells
- Stress-Related Proteins Are Specifically Expressed under Non-Stress Conditions in the Overwinter Buds of the Gentian Plant Gentiana triflora
- TAS1 trans-Acting siRNA Targets Are Differentially Regulated at Low Temperature, and TAS1 trans-Acting siRNA Mediates Temperature-Controlled At1g51670 Expression
- Mapping Major Replication Origins on the Rice Plastid DNA