植物の環境感覚:刺激受容から細胞応答まで - 文部科学省 科学研究費補助金 新学術領域研究 平成22年度~26年度

原著論文

2010年度

  • Kozuka, T., J. Kobayashi, G. Horiguchi, T. Demura, H. Sakakibara, H. Tsukaya and A. Nagatani (2010) Involvement of auxin and brassinosteroid in the regulation of petiole elongation under the shade. Plant Physiol., 153:1608-1618.
  • Jang, I.C., R. Henriques, H.S. Seo, A. Nagatani and N.H. Chua (2010) Arabidopsis PHYTOCHROME INTERACTING FACTOR proteins promote phytochrome B polyubiquitination by COP1 E3 ligase in the nucleus. Plant Cell, 22:2370-2383.
  • Toledo-Ortiz, G., Y. Kiryu, J. Kobayashi1, Y. Kim, H.G. Nam, N. Mochizuki and A. Nagatani (2010) Subcellular sites of the signal transduction and degradation of phytochrome A. Plant Cell Physiol. 2010 51:1648-60.
  • Kudo, H., Kudo, K., Ambo, H., Uemura, M. and Kawai, S. (2010) Cadmium sorption to plasma membrane isolated from barley roots is hampered by copper association onto membranes. Plant Sci., 180:300-305.

  • Minami, A., Furuto, A. and Uemura, M. (2010) Dynamic compositional changes of detergent-resistant plasma membrane microdomains during plant cold acclimation. Plant Signal. Behav., 5:1115-1118.

  • Yamazaki, T., Takata, N., Uemura, M. and Kawamura, Y. (2010) Arabidopsis synaptotagmin SYT1, a type I signal-anchor protein, requires tandem C2 domains for delivery to the plasma membrane. J. Biol. Chem., 285:23165-23176.

  • Takata, N., Saito, S., Tanaka-Saito, C. and Uemura M. (2010) Phylogenetic footprint of the plant clock system in angiosperms: evolutionary processes of Pseudo-Response Regulators. BMC Evol. Biol., 10:126.

  • 畑山仁、小出章二、高橋克幸、河村幸男、高木浩一(2011)ナノパルス秒高電界が与える効果-高電界印加後のブドウ表皮の細胞形態と漏出ポリフェノール総量-.農業機械学会誌 73:135-141.

  • 金子智志、山﨑誠和、上村松生、河村幸男.2010.植物におけるカルシウム依存的凍結耐性の普遍性.低温生物学会誌 56: 71-76.

  • Sogo Nishio, Ryo Moriguchi, Hiroki Ikeda, Hideki Takahashi, Hideyuki Takahashi, Nobuharu Fujii, Thomas J. Guilfoyle, Koki Kanahama and Yoshinori Kanayama (2010) Expression analysis of the auxin efflux carrier family in tomato fruit development. Planta. 232: 755-764.

  • Moriwaki T., Miyazawa Y., Takahashi H. (2010) Transcriptome analysis of gene expression during the hydrotropic response in Arabidopsis seedlings. Environmental and Experimental Botany 69: 148-157.

  • Yamazaki T., Takata N., Uemura M., Kawamura Y. (2010) Arabidopsis synaptotagmin SYT1, a type I signal-anchor protein, requires tandem C2 domains for delivery to the plasma membrane. Journal of Biological Chemistry 285: 23165-23176

  • Sakata T., Oshino T., Miura S., Tomabechi M., Tsunaga Y., Higashitani N., Miyazawa Y., Takahashi H., Watanabe M., Higashitani A. (2010) Auxin reverses plant male sterility caused by high temperatures. Proceedings of the National Academy of Sciences of the U.S.A. 107: 8569-8574.
  • Takayama, Y., Nakasako, M., Okajima, K., Iwata, A., Kashojiya, S., Matsui, Y. and Tokutomi, S. (2011) Light-Induced movement of the LOV2 domain in an Asp720Asn mutant LOV2-Kinase fragment of Arabidopsis phototropin 2. Biochemistry, 50:1174-83.

  • Tanaka, K., Nakasone, Y., Okajima, K., Ikeuchi, M., Tokutomi S. and Terazima M. (2011) A way to sense light intensity: Multiple-excitation of the BLUF photoreceptor TePixD suppresses conformational change. FEBS Lett., 585:786-790.

  • Toyooka, T., Tanaka, K, Okajima, K., Ikeuchi, M., Tokutomi, S. and Terazima, M. (2010) Macromolecular ding Effects on Reactions of TePixD (Tll0078). Photochem Photobiol., DOI:10.1111/j.1751-1097.2010.00849.x.

  • Nakasone, Y., Zikihara, K., Tokutomi, S. and Terazima, M. (2010) Kinetics of conformational changes of the FKF1-LOV domain upon photoexcitation. Biophys.J., 99:3831-39.

  • Kawaguchi, Y., Nakasone, Y., Zikihara, K., Tokutomi, S. and Terazima, M. (2010) When is the helix conformation restored after the reverse reaction of Phototropin. J. Amer. Chem. Soc., 132:8838-39.

  • Mano S., Miwa T., Nishikawa S., Mimura T., Nishimura M. (2011) The Plant Organelles Database 2 (PODB2): an updated resource containing movie data to address plant organelle dynamics. Plant & Cell Physiology 52(2): 244-253 doi:10.1093/pcp/pcq184.

  • Mano, S., Miwa, T., Nishikawa, S., Mimura, T., Nishimura, M. (2011) The Plant Organelles Database 2 (PODB2): an updated resource containing movie data of plant organelle dynamics. Plant Cell Physiol. 52: 244-53.

  • Kanai, M., Nishimura, M., Hayashi, M. (2010) A peroxisomal ABC transporter promotes seed germination by inducing pectin degradation under the control of ABI5. Plant J. 62: 936-947.

  • Miura D., Tsuji Y., Takahashi K., Wariishi H. and Saito K. (2010) A Strategy for the Determination of the Elemental Composition by Fourier Transform Ion Cyclotron Resonance Mass Spectrometry Based on Isotopic Peak Ratios. Analytical Chemistry, 82: 5887-5891

  • Yukihira D., Miura D., Saito K., Takahashi K. and Wariishi H. (2010) MALDI-MS-Based High-Throughput Metabolite Analysis for Intracellular Metabolic Dynamics. Analytical Chemistry, 82: 4278-4282
  • Hosokawa,Y., Hagiyama,M., Iino,T., Murakami,Y and Ito,A. (2011) Non-contact etimation of intercellular breaking force using a femtosecond laser impulse quantified by atomic force microscopy. Proc. Nat'l. Acad. Sci. , 108 : 1777-1782.

  • Maezawa,Y., Okano,K., Matsubara,M., Masuhara,H and Hosokawa,Y. (2011) Morphological evaluation of cell differentiation after the isolation of single cells by a femtosecond laser-induced impulsive force. Biomed. Microdevices, 13 : 117-122.

  • Iino,T and Hosokawa,Y. (2010) Direct measurement of femtosecond laser impulse in water by atomic force microscopy. Appl. Phys. Express, 3 : 107002.

  • Kuo,Y., Wu,C., Hosokawa,Y., Maezawa,Y., Okano,T., Masuhara,H and Kao,F. (2010) Local stimulation of cultured myocyte cells by femtosecond laser-induced stress wave. Appl. Phys. A, 101 : 597-600.

  • Maezawa,Y., Hosokawa,Y., Okano,K., Matsubara,M and Masuhara,H. (2010) In situ observation of cell detachment process initiated by femtosecond laser-induced stress wave. Appl. Phys. A, 101 : 127-131.

  • Hosokawa,C., Suzuki,M., Taguchi,T., Kiyohara,A., N.S,Kudoh., Hosokawa.Y., Okano,K and Masuhara,H. (2010) Micro-channel fabrication by femtosecond laser to arrange neuronal cells on multi-electrode arrays. Appl. Phys. A, 101 : 423-428.

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