Proteomic Analysis on Symbiotic Differentiation of Mitochondria in Soybean Nodules
スポンサーリンク
概要
著者
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Day David
School Of Biomedical & Chemical Sciences Faculty Of Life & Physical Sciences University Of W
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Tajima Shigeyuki
Department of Bioresource Science, Faculty of Agriculture, Kagawa University
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Hoa L
Kagawa Univ. Kagawa Jpn
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Nomura Mika
Faculty of Agriculture, Kagawa University
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Tajima Shigeyuki
Faculty of Agriculture, Kagawa University
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NOMURA Mika
Department of Life Science, Faculty of Agriculture, Kagawa University
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Hoa Le
Department Of Life Science Faculty Of Agriculture Kagawa University
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TAJIMA Shigeyuki
Kagawa Univ.
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Nomura Mika
Faculty Of Agriculture Kagawa University
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Nomura Mika
Department Of Hypertension And Cardiorenal Medicine Dokkyo Medical University School Of Medicine
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Nomura Mika
Deppartment Of Life Sciences Faculty Of Agriculture Kagawa University
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Nomura M
Kansai Electric Power Co. Inc. Amagasaki Jpn
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Nomura Mika
Fac. Agr. Kagawa University
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Nomura Mika
Department Of Life Sciences Faculty Of Agriculture Kagawa University
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Tajima Shigeyuki
Kagawa Univ. Kagawa Jpn
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Tajima Shigeysuki
Department Of Life Science Faculty Of Agriculture Kagawa University
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KAJIWARA Hideyuki
Department of Molecular Biology, National Institute of Agrobiological Resources
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Tajima Shigeyuki
Faculty Of Agriculture Kagawa University
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Tajima S
Faculty Of Agriculture Kagawa University
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Tajima S
Department Of Life Science Kagawa University
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Tajima Shigeyuki
Deppartment Of Life Sciences Faculty Of Agriculture Kagawa University
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Tajima Shigeyuki
Department Of Agricultural Chemistry Faculty Of Agriculture Nagoya University
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Nomura M
Faculty Of Agriculture Kagawa University
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Tajima Shigeyuki
Fac. Agr. Kagawa University
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Tajima Shigeyuki
Dept. Of Bioresource Science Faculty Of Agriculture Kagawa University
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Kajiwara Hideyuki
Department Of Biochemistry National Institute Of Agrobiological Sciences
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Tajima Shigeyuki
Department Of Life Sciences Faculty Of Agriculture Kagawa University
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Nomura Mika
Faculty Of Agriculture Kagawa University Kagawa
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Tajima Shigeyuki
Dept. Bioresource Sience Kagawa Univ.
関連論文
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- Identification of a Sed5-like SNARE Gene LjSYP32-1 that Contributes to Nodule Tissue Formation of Lotus japonicus
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- The Promoter for C_4-type Mitochondrial Aspartate Aminotransferase Does not Direct Bundle Sheath-specific Expression in Transgenic Rice Plants
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- FUNCTION ANALYSIS OF PYRUVATE Pi DIKINASE IN RICE
- URICASE GENE EXPRESSION IN A NON-ALLANTOIN TYPE LEGUME, MEDICAGO SATIVA
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- Cloning and Characterization of a NADP^+ -Malic Enzyme Gene from Bradyrhizobium japonicum USDA110
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- Purification and Characterization of a β-Glucosidase with β-Xylosidase Activity from Aspergillus sojae
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- Succinate Degradation through the Citric Acid Cycle in Bradyrhizobium japonicum J501 Bacteroids under Low Oxygen Concentrations(Biological Chemistry)
- Proteomic Analysis on Symbiotic Differentiation of Mitochondria in Soybean Nodules
- Characterization of Bacteroid Proteins in Soybean Nodules Formed with Bradyrhizobium japonicum USDA110
- Regulation of uricase activity in developing roots of Glycine max, non-nodulating variety A62-2
- Cadaverine Involved in Urate Degrading Activity (Uricase Activity) in Soybean Radicles
- Molecular Analysis of Ribosomal RNA Gene of Red Tide Algae Obtained from the Seto Inland Sea
- Application of Repetitive Extragenic Palindromic (REP)-PCR and Enterobacterial Repetitive Intergenic Consensus (ERIC)-PCR Analysis to the Identification and Classification of Japan and Thai Local Isolates of Bradyrhizobium japonicum, Shinorhizobium melilo
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- A molecular phylogenic analysis of marine red tide phytoplankton
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- Nucleotide Pools in Soybean Nodule Tissues, a Survey of NAD(P)/NAD(P)H Ratios and Energy Charge
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- Expression of Two Uricase (Nodulin-35) Genes in a Non-Ureide Type Legume, Medicago sativa
- PROMOTER ANALYSIS OF URICASE II (NODULIN 35) GENES TO IDENTIFY THE ELEMENTS FOR NODULE UNINFECTED CELL-SPECIFIC EXPRESSION
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- EFFECTS OF BETAINE ON THE PHOTO-SYNTHETIC ELECTRON TRANSPORT OF THE TRANSFORMANT-AND SALT TOLERANT-CYANOBACTERIA
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- Expression and characterization of PKL01, an Ndr kinase homolog in Lotus japonicus
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