Title |
Professor |
External Link |
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YAMAGUCHI-SHINOZAKI Kazuko Professor |
Employment Record in Research 【 display / non-display 】
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Tokyo University of Agriculture Research Institute for Agricultural and Life Sciences Professor
2020.04 - 2021.03
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Tokyo University of Agriculture Research Institute for Agricultural and Life Sciences Professor
2021.04 - 2022.03
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Tokyo University of Agriculture Nodai Research Institute Professor
2022.04
Papers 【 display / non-display 】
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Constitutively active B2 Raf-like kinases are required for drought-responsive gene expression upstream of ABA-activated SnRK2 kinases. Reviewed
Fumiyuki Soma, Fuminori Takahashi, Satoshi Kidokoro, Haruka Kameoka, Takamasa Suzuki, Yusaku Uga, Kazuo Shinozaki, Kazuko Yamaguchi-Shinozaki
Proceedings of the National Academy of Sciences of the United States of America 120 ( 4 ) 2221863120 2023.06
Authorship:Last author, Corresponding author Language:English Publishing type:Research paper (scientific journal)
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Clock-regulated coactivators selectively control gene expression in response to different temperature stress conditions in Arabidopsis. Reviewed
Satoshi Kidokoro, Izumi Konoura, Fumiyuki Soma, Takamasa Suzuki, Takuya Miyakawa, Masaru Tanokura, Kazuo Shinozaki, Kazuko Yamaguchi-Shinozaki
Proceedings of the National Academy of Sciences of the United States of America 120 ( 16 ) 2023.04
Authorship:Last author, Corresponding author Language:English Publishing type:Research paper (scientific journal)
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OsTZF1, a CCCH-tandem zinc finger protein gene, driven under own promoter produces no pleiotropic effects and confers salt and drought tolerance in rice. Reviewed International coauthorship International journal
Muhammad Ilyas, Safdar Hussain Shah, Yasunari Fujita, Kyonoshin Maruyama, Kazuo Nakashima, Kazuko Yamaguchi-Shinozaki, Asad Jan
Plant signaling & behavior 17 ( 1 ) 2142725 2022.12
Language:English Publishing type:Research paper (scientific journal)
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Functional genomics in plant abiotic stress responses and tolerance: From gene discovery to complex regulatory networks and their application in breeding
SHINOZAKI Kazuo, YAMAGUCHI-SHINOZAKI Kazuko
Proceedings of the Japan Academy, Series B 98 ( 8 ) 470 - 492 2022.10
Language:English Publisher:The Japan Academy
<p>Land plants have developed sophisticated systems to cope with severe stressful environmental conditions during evolution. Plants have complex molecular systems to respond and adapt to abiotic stress, including drought, cold, and heat stress. Since 1989, we have been working to understand the complex molecular mechanisms of plant responses to severe environmental stress conditions based on functional genomics approaches with <i>Arabidopsis thaliana</i> as a model plant. We focused on the function of drought-inducible genes and the regulation of their stress-inducible transcription, perception and cellular signal transduction of stress signals to describe plant stress responses and adaptation at the molecular and cellular levels. We have identified key genes and factors in the regulation of complex responses and tolerance of plants in response to dehydration and temperature stresses. In this review article, we describe our 30-year experience in research and development based on functional genomics to understand sophisticated systems in plant response and adaptation to environmental stress conditions.</p>
DOI: 10.2183/pjab.98.024
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Arabidopsis TBP-ASSOCIATED FACTOR 12 ortholog NOBIRO6 controls root elongation with unfolded protein response cofactor activity Reviewed International journal
June-Sik Kim, Yuki Sakamoto, Fuminori Takahashi, Michitaro Shibata, Kaoru Urano, Sachihiro Matsunaga, Kazuko Yamaguchi-Shinozaki, Kazuo Shinozaki
Proceedings of the National Academy of Sciences of the United States of America 119 ( 6 ) 2120219119 2022.02
Language:English Publishing type:Research paper (scientific journal)
Honours, Awards and Prizes 【 display / non-display 】
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みどりの学術賞
2018.04 内閣府
篠崎 和子
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学会賞
2009.03 日本植物生理学会
篠崎 和子
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文部科学大臣賞
2002.04 文部科学省
篠崎 和子
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つくば賞
2002.02 茨城県科学技術振興財団
篠崎 和子
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ゴールドメダル賞
2000.04 東京テクノフォーラム21
篠崎 和子