Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Shiori S Aki"'
Autor:
Shiori S. Aki, Tomoyo Morimoto, Taiki Ohnishi, Ayumi Oda, Hirotaka Kato, Kimitsune Ishizaki, Ryuichi Nishihama, Takayuki Kohchi, Masaaki Umeda
Publikováno v:
Scientific Reports, Vol 12, Iss 1, Pp 1-11 (2022)
Abstract Cytokinin, a plant hormone, plays essential roles in organ growth and development. The type-B response regulator-mediated cytokinin signaling is repressed by type-A response regulators and is conserved in the liverwort Marchantia polymorpha.
Externí odkaz:
https://doaj.org/article/379bd00264d94cf09c08ad0e353c2e7f
Publikováno v:
Journal of Plant Research. 134:279-289
COP9 signalosome (CSN) is a nuclear complex composed of eight distinct subunits that governs vast developmental processes in Arabidopsis thaliana (L.) Heynh. The null alleles of csn mutants display pleiotropic phenotypes that result in seedling letha
Autor:
Shiori S Aki, Tatsuya Mikami, Ryuichi Nishihama, Takayuki Kohchi, Masaaki Umeda, Satoshi Naramoto, Kimitsune Ishizaki, Hitoshi Sakakibara, Yumiko Takebayashi, Junko Kyozuka, Mikiko Kojima
Publikováno v:
Plant and Cell Physiology. 60:1842-1854
Cytokinins are known to regulate various physiological events in plants. Cytokinin signaling is mediated by the phosphorelay system, one of the most ancient mechanisms controlling hormonal pathways in plants. The liverwort Marchantia polymorpha posse
Publikováno v:
Current Opinion in Plant Biology. 51:1-6
The Gap phases of the cell cycle are essential to perceive internal and external signals and control cell division and differentiation. However, our knowledge of molecular mechanisms underlying G2 progression in plants remains quite limited. In this
Publikováno v:
Plant Signal Behav
Cytokinins play an essential role in plant growth and development. A recent study showed that the cytokinin signaling pathway was conserved in the liverwort Marchantia polymorpha, and that it controlled gemma cup and rhizoid formation during thallus
Autor:
Akifumi Sugiyama, Efraín De Luna, Hideya Fukuzawa, Yuki Hirakawa, Yoshihiro Yoshitake, Jeremy Schmutz, Minoru Kubo, Sabine Zachgo, Sumio Sugano, Satoshi Naramoto, Isabel Monte, Juan Caballero-Pérez, Takashi Okamoto, Feng Chen, Keita Kinose, Rui Sun, Bruno Catarino, Shin-ichiro Inoue, Tomokazu Kawashima, Yasukazu Nakamura, Masaaki Umeda, Masayuki Tsuzuki, Junko Kyozuka, John L. Bowman, Mitsuru Kakita, Chia-Wei Lu, Eduardo Flores-Sandoval, Takayuki Kohchi, Christian R. Boehm, Kimitsune Ishizaki, D. Magnus Eklund, Shih-Shun Lin, Makoto Shirakawa, Jim Haseloff, Moritz Rövekamp, Hirofumi Nakagami, Anna Lipzen, Yuichiro Watanabe, Kazuhiko Nishitani, Noriyuki Suetsugu, Keisuke Inoue, Marc W. Schmid, Yosuke Kawai, Hirokazu Tomogane, Robert A. Martienssen, Shengqiang Shu, Ryuichi Nishihama, Ulf Lagercrantz, Miya Mizutani, Liam Dolan, Tom Dierschke, Frédéric Berger, Felix Althoff, Kevin M. Davies, Ueli Grossniklaus, Bence Galik, Asao Fujiyama, Sureshkumar Balasubrmanian, Ryusuke Yokoyama, Takashi Ueda, Izumi Yotsui, Toshinori Kinoshita, Misato Ohtani, Eri Koide, Kazufumi Yazaki, Shinichiro Sawa, Jane Grimwood, Diane Bauer, Mario A. Arteaga-Vazquez, Sakiko Ishida, Takahiro Hamada, Roberto Solano, Alexander J. Hetherington, Daniel Grimanelli, Stevie N. Florent, Erika Lindquist, Ryosuke Sano, Kenji Komatsu, Catherine Adam, Asuka Higo, Sarah Kopischke, Hope Hundley, Rebecca A. Mosher, Jerry Jenkins, Naoki Minamino, Hideki Nagasaki, Mizuki Takenaka, Kerrie Barry, Takashi Araki, Nobuyoshi Mochizuki, Anke Reinders, Mihails Delmans, Yuji Kohara, Yoko Ikeda, Daisuke Takezawa, Mansi Chovatia, Ana E. Dorantes-Acosta, Taku Demura, Masaki Okumura, Qidong Jia, Takehiko Kanazawa, Yutaka Suzuki, Megan Kennedy, Jeremy Phillips, Bernardo Pollak, Liam N. Briginshaw, Shohei Yamaoka, Shota Chiyoda, Alexander Spunde, John M. Ward, Masaharu Mizutani, Katsuyuki T. Yamato, Shiori S Aki
Publikováno v:
Cell
Cell, Elsevier, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Cell, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Bowman, John L; Kohchi, Takayuki; Yamato, Katsuyuki T; Jenkins, Jerry; Shu, Shengqiang; Ishizaki, Kimitsune; et al.(2017). Insights into Land Plant Evolution Garnered from the Marchantia polymorpha Genome. CELL, 171(2), 287-+. doi: 10.1016/j.cell.2017.09.030. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/7pr066zj
Bowman, J L, Kohchi, T, Yamato, K T, Jenkins, J, Shu, S, Ishizaki, K, Yamaoka, S, Nishihama, R, Nakamura, Y, Berger, F, Adam, C, Aki, S S, Althoff, F, Araki, T, Arteaga-Vazquez, M A, Balasubrmanian, S, Barry, K, Bauer, D, Boehm, C R, Briginshaw, L, Caballero-Perez, J, Catarino, B, Chen, F, Chiyoda, S, Chovatia, M, Davies, K M, Delmans, M, Demura, T, Dierschke, T, Dolan, L, Dorantes-Acosta, A E, Eklund, D M, Florent, S N, Flores-Sandoval, E, Fujiyama, A, Fukuzawa, H, Galik, B, Grimanelli, D, Grimwood, J, Grossniklaus, U, Hamada, T, Haseloff, J, Hetherington, A J, Higo, A, Hirakawa, Y, Hundley, H N, Ikeda, Y, Inoue, K, Inoue, S I, Ishida, S, Jia, Q, Kakita, M, Kanazawa, T, Kawai, Y, Kawashima, T, Kennedy, M, Kinose, K, Kinoshita, T, Kohara, Y, Koide, E, Komatsu, K, Kopischke, S, Kubo, M, Kyozuka, J, Lagercrantz, U, Lin, S S, Lindquist, E, Lipzen, A M, Lu, C W, De Luna, E, Martienssen, R A, Minamino, N, Mizutani, M, Mizutani, M, Mochizuki, N, Monte, I, Mosher, R, Nagasaki, H, Nakagami, H, Naramoto, S, Nishitani, K, Ohtani, M, Okamoto, T, Okumura, M, Phillips, J, Pollak, B, Reinders, A, Rövekamp, M, Sano, R, Sawa, S, Schmid, M W, Shirakawa, M, Solano, R, Spunde, A, Suetsugu, N, Sugano, S, Sugiyama, A, Sun, R, Suzuki, Y, Takenaka, M, Takezawa, D, Tomogane, H, Tsuzuki, M, Ueda, T, Umeda, M, Ward, J M, Watanabe, Y, Yazaki, K, Yokoyama, R, Yoshitake, Y, Yotsui, I, Zachgo, S & Schmutz, J 2017, ' Insights into land plant evolution garnered from the marchantia polymorpha Genome ', Cell, vol. 171, no. 2, pp. 287-304.e15 . https://doi.org/10.1016/j.cell.2017.09.030
Cell, Elsevier, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Cell, 2017, 171 (2), pp.287-304.e15. ⟨10.1016/j.cell.2017.09.030⟩
Bowman, John L; Kohchi, Takayuki; Yamato, Katsuyuki T; Jenkins, Jerry; Shu, Shengqiang; Ishizaki, Kimitsune; et al.(2017). Insights into Land Plant Evolution Garnered from the Marchantia polymorpha Genome. CELL, 171(2), 287-+. doi: 10.1016/j.cell.2017.09.030. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/7pr066zj
Bowman, J L, Kohchi, T, Yamato, K T, Jenkins, J, Shu, S, Ishizaki, K, Yamaoka, S, Nishihama, R, Nakamura, Y, Berger, F, Adam, C, Aki, S S, Althoff, F, Araki, T, Arteaga-Vazquez, M A, Balasubrmanian, S, Barry, K, Bauer, D, Boehm, C R, Briginshaw, L, Caballero-Perez, J, Catarino, B, Chen, F, Chiyoda, S, Chovatia, M, Davies, K M, Delmans, M, Demura, T, Dierschke, T, Dolan, L, Dorantes-Acosta, A E, Eklund, D M, Florent, S N, Flores-Sandoval, E, Fujiyama, A, Fukuzawa, H, Galik, B, Grimanelli, D, Grimwood, J, Grossniklaus, U, Hamada, T, Haseloff, J, Hetherington, A J, Higo, A, Hirakawa, Y, Hundley, H N, Ikeda, Y, Inoue, K, Inoue, S I, Ishida, S, Jia, Q, Kakita, M, Kanazawa, T, Kawai, Y, Kawashima, T, Kennedy, M, Kinose, K, Kinoshita, T, Kohara, Y, Koide, E, Komatsu, K, Kopischke, S, Kubo, M, Kyozuka, J, Lagercrantz, U, Lin, S S, Lindquist, E, Lipzen, A M, Lu, C W, De Luna, E, Martienssen, R A, Minamino, N, Mizutani, M, Mizutani, M, Mochizuki, N, Monte, I, Mosher, R, Nagasaki, H, Nakagami, H, Naramoto, S, Nishitani, K, Ohtani, M, Okamoto, T, Okumura, M, Phillips, J, Pollak, B, Reinders, A, Rövekamp, M, Sano, R, Sawa, S, Schmid, M W, Shirakawa, M, Solano, R, Spunde, A, Suetsugu, N, Sugano, S, Sugiyama, A, Sun, R, Suzuki, Y, Takenaka, M, Takezawa, D, Tomogane, H, Tsuzuki, M, Ueda, T, Umeda, M, Ward, J M, Watanabe, Y, Yazaki, K, Yokoyama, R, Yoshitake, Y, Yotsui, I, Zachgo, S & Schmutz, J 2017, ' Insights into land plant evolution garnered from the marchantia polymorpha Genome ', Cell, vol. 171, no. 2, pp. 287-304.e15 . https://doi.org/10.1016/j.cell.2017.09.030
The evolution of land flora transformed the terrestrial environment. Land plants evolved from an ancestral charophycean alga from which they inherited developmental, biochemical, and cell biological attributes. Additional biochemical and physiologica
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d7ce6263bba787a170615867a1d6a060
https://www.repository.cam.ac.uk/handle/1810/271816
https://www.repository.cam.ac.uk/handle/1810/271816
Autor:
Hitomi Takagi, Minako Ueda, Shiori S Aki, Ke Yin, Takehiro Kajihara, Takashi Nobusawa, Masaaki Umeda, Chikage Umeda-Hara
Publikováno v:
The Plant Journal. 80(3):541-552
Visualization of the spatiotemporal pattern of cell division is crucial to understand how multicellular organisms develop and how they modify their growth in response to varying environmental conditions. The mitotic cell cycle consists of four phases
Autor:
Paola Vittorioso, Shiori S Aki, Gianmarco Rinaldi, Tomohiko Tsuge, Silvia Iafrate, Xing Wang Deng, Giovanna Serino, Leonardo Lupacchini, Paolo Costantino, Youichi Kondou, Anna Franciosini, Giuliana Gusmaroli, Giovanni Mele, Benedetta Lombardi, Valeria Pecce, Minami Matsui
Publikováno v:
Molecular Plant. 6(5):1616-1629
The regulation of protein turnover by the ubiquitin proteasome system (UPS) is a major posttranslational mechanism in eukaryotes. One of the key components of the UPS, the COP9 signalosome (CSN), regulates ‘cullin–ring' E3 ubiquitin ligases. In p
Autor:
Masaaki Umeda, Shiori S Aki
Publikováno v:
Methods in Molecular Biology ISBN: 9781493931415
This chapter focuses on visualization of cell cycle progression in plant tissues using the dual-color marker system "Cytrap." The Cytrap line carries a part of Arabidopsis CDT1a fused to the red fluorescent protein (RFP) gene, which monitors the cell
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::dcd255b4f6e5eb36b587e0165cc5eccf
https://doi.org/10.1007/978-1-4939-3142-2_4
https://doi.org/10.1007/978-1-4939-3142-2_4
Publikováno v:
Plantcell physiology. 52(8)
Flowering plants produce multicellular gametophytes through an elaborate regulation of gametogenesis. During female and male gametogenesis in Arabidopsis thaliana, sporogenous cells differentiate and undergo meiosis to produce megaspores and microspo