Research field (1):
Plants: molecular biology and physiology
Research keywords (4):
一次代謝
, 分子育種
, NAD(P)(H)代謝
, 環境ストレス応答
Research theme for competitive and other funds (12):
2022 - 2026 植物環境応答におけるNAD(P)(H)代謝ネットワーク制御の分子基盤
2021 - 2023 植物の不均一環境変動応答を支える細胞内酸化還元力バランス制御
2019 - 2023 葉緑体機能を支えるレドックス制御システムの包括的解析
2018 - 2022 Research on microdomain visualization probes to elucidate plant immunity
2018 - 2022 植物の環境ストレス応答における生体膜マイクロドメインの構築と機能
2019 - 2021 葉緑体NADP供給とプロトン駆動力のバランス制御機構の解明
2017 - 2019 プロトン駆動力とNADP量的制御のクロストーク
2014 - 2019 Analysis of plant environmental response through plasmamembrane microdomain
2010 - 2012 Analysis of GHG emission dynamics in hydroponics
2009 - 2010 脂肪酸代謝をエフェクターとする植物酸化ストレス応答細胞死の機構
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Papers (127):
Kaushalya Dayarathne, Toshiki Ishikawa, Aikeranmu Kadeer, Masatoshi Yamaguchi, Maki Kawai-Yamada. The effect of light availability and light wavelength on growth, 2-MIB biosynthesis, and 2-MIB-related gene expression in Pseudanabaena foetida var. intermedia. Archives of microbiology. 2024. 206. 9. 367-367
Atsuko Miyagi, Nobuhiro Tanaka, Matthew Shenton, Kaworu Ebana, Satoshi Ohkubo, Shunsuke Adachi, Taiichiro Ookawa, Maki Kawai-Yamada. Metabolic diversity analysis and genome wide assessment of oxalate accumulation in the leaves of rice (<i>Oryza sativa</i>) cultivars. Plant Biotechnology. 2024
Yusuke Fukuda, Chinami Ishiyama, Maki Kawai-Yamada, Shin-nosuke Hashida. Adjustment of light-responsive NADP dynamics in chloroplasts by stromal pH. Nature Communications. 2023
Marina Ushio, Toshiki Ishikawa, Takakazu Matsuura, Izumi C. Mori, Maki Kawai-Yamada, Yoichiro Fukao, Minoru Nagano. MHP1 and MHL generate odd-chain fatty acids from 2-hydroxy fatty acids in sphingolipids and are related to immunity in Arabidopsis thaliana. Plant Science. 2023. 336. 111840-111840
Kaushalya Dayarathne, Toshiki Ishikawa, Satoru Watanabe, Yuuma Ishikawa, Kadeer Aikeranmu, Hina Kitagawaa, Natsumi Komatsubara, Masatoshi Yamaguchi, Maki Kawai-Yamada. Heterologous expression of mtf and mtc genes of Pseudanabaena foetida var. intermedia is sufficient to produce 2-methylisoborneol in Escherichia coli. Microbiology spectrum. 2023. 11. 5. e0256123
2014 - 現在 Saitama University Graduate School of Science and Engineering
2008 - 2014 Saitama University Graduate School of Science and Engineering
2005 - 2008 The University of Tokyo Institute of Molecular and Cellular Biosciences
2000 - 2005 The University of Tokyo Institute of Molecular and Cellular Biosciences
1999 - 2000 日本原子力研究所先端基礎研究センター 博士研究員
1995 - 1999 日本学術振興会特別研究員(PD)
1994 - 1995 日本学術振興会特別研究員(DC)
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Awards (5):
2018/11 - 埼玉大学 埼玉大学・学長特別賞(みずき賞)
2007 - 日本植物生理学会 奨励賞 「酸化ストレス応答としての植物細胞死の研究」
2007 - -
2002 - 日本植物細胞分子生物学会 奨励賞 「細胞死抑制因子のクロストークに関する研究」
2002 - -
Association Membership(s) (5):
JAPAN SOCIETY FOR BIOSCIENCE, BIOTECHNOLOGY, AND AGROCHEMISTRY
, THE MOLECULAR BIOLOGY SOCIETY OF JAPAN
, JAPANESE SOCIETY FOR PLANT CELL AND MOLECULAR BIOLOGY
, THE BOTANICAL SOCIETY OF JAPAN
, THE JAPANESE SOCIETY OF PLANT PHYSIOLOGISTS