Rchr
J-GLOBAL ID:201701007157100861
Update date: Jun. 16, 2024
Hashida Shin-nosuke
ハシダ シンノスケ | Hashida Shin-nosuke
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Research field (1):
Plants: molecular biology and physiology
Research keywords (6):
成長抑制
, 光環境応答
, NAD(P)代謝
, NAD(P)生合成
, 光合成
, エネルギー代謝
Research theme for competitive and other funds (2):
2024 - 2027 葉緑体NADPプール変動によるエネルギー代謝切り替え機構の解明
2020 - 2023 Elucidating the bottlenech of NADP regeneration in plants
Papers (42):
Yusuke Fukuda, Chinami Ishiyama, Maki Kawai-Yamada, Shin-nosuke Hashida. Adjustment of light-responsive NADP dynamics in chloroplasts by stromal pH. Nature Communications. 2023
Chaomurilege, Yanhui Zu, Atsuko Miyagi, Shin-Nosuke Hashida, Toshiki Ishikawa, Masatoshi Yamaguchi, Maki Kawai-Yamada. Loss of chloroplast-localized NAD kinase causes ROS stress in
Arabidopsis thaliana
. Journal of Plant Research. 2022. in press
Maki Kawai-Yamada, Atsuko Miyagi, Yuki Sato, Yuki Hosoi, Shin-Nosuke Hashida, Toshiki Ishikawa, Masatoshi Yamaguchi. Altered metabolism of chloroplastic NAD kinase-overexpressing Arabidopsis in response to magnesium sulfate supplementation. Plant signaling & behavior. 2021. 16. 1. 1844509-1844509
Alisdair Fernie, Shin-nosuke Hashida, Kazuya Yoshimura, Bertr, Gaki{\`{e } }re, Zhonglin Mou, Pierre P{\'{e } }triacq. Editorial: NAD Metabolism and Signaling in Plants. Frontiers in Plant Science. 2020. 11
Yuma Ishikawa, Maki Kawai-Yamada, Shin-nosuke Hashida. Measurement of Chloroplastic NAD Kinase Activity and Whole Tissue NAD Kinase Assay. BIO-PROTOCOL. 2020. 10. 1
more...
MISC (14):
橋田慎之介. Photosynthesis from the viewpoint of “NAD world”: Where does the electron acceptor NADP
+
come from?. 光合成研究. 2020. 30. 3
橋田慎之介, 川合真紀. 光合成における電子受容体NADP
+
供給システムと電子伝達の交互作用. 日本植物生理学会年会(Web). 2019. 60th
吉原利一, 長尾悠人, 橋田慎之介, 河地有木, 藤巻秀. Measurement of environmental radioactivity using a cumulative gamma radiation dosimeter (1); A capability study. 電力中央研究所原子力リスク研究センター研究報告. 2015. O14002
TOKURA Akio, ASOBE Masaki, ENBUTSU Koji, YOSHIHARA Toshihiro, HASHIDA Shin-nosuke, TAKENOUCHI Hirokazu. In-situ gas monitoring system using 4.6-μm-band difference frequency generation light source for N_2O detection in agricultural production. IEICE technical report. Component parts and materials. 2013. 113. 188. 89-94
吉原利一, 吉原利一, 北崎真由, 北崎真由, 鈴井伸郎, 柳澤俊輔, 柳澤俊輔, 石井里美, 山崎治明, 山崎治明, et al. Cd超耐性植物ヘビノネゴザのCd吸収量に及ぼす培地Ca濃度の影響. 日本植物生理学会年会要旨集. 2012. 53rd
more...
Patents (18):
植物の成長制御剤
抑草資材固化物、抑草資材固化物の製造方法
植物成長抑制方法
抑草資材固化物、抑草資材固化物の製造方法
植物の成長を制御する資材
more...
Work history (7):
2022/04 - 現在 Saitama University Faculty of Engineering
2020/07 - 現在 一般財団法人 電力中央研究所 上席研究員
2020/04 - 2023/03 Saitama University Graduate School of Science and Engineering
2008/04 - 2020/06 一般財団法人 電力中央研究所 主任研究員
2013/04 - 2016/03 Saitama University Graduate School of Science and Engineering
2005/04 - 2008/03 日本学術振興会特別研究員 PD
2002/04 - 2005/03 日本学術振興会特別研究員 DC-1
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