Research theme for competitive and other funds (13):
2023 - 2026 Functional analyses of bacterial cspC/E genes found in barley genome
2021 - 2024 ゲノムデザインと自由な書き換えによる高収量コムギの創出
2018 - 2023 超低温保存が可能な種子における天然変性蛋白質の卓越した保護活性の分子機構
2017 - 2020 Improvement of freezing tolerance of wheat by development of new strategy for transgene-free genome editing
2017 - 2019 Development of a non-GM method for crop genome editing
2014 - 2017 シロイヌナズナにおける核型ポリA結合タンパク質を介した枝分かれの調節機構
2014 - 2017 Defense mechanism of a snow mold through cellulose production
2012 - 2014 Mechanisms of trehalose-induced systemic resistance through root to shoot signaling
2010 - 2012 Mechanisms of gene regulation mediated by a novel nuclear mRNP
2010 - 2011 Molecular basis of potential extreme stress tolerance in rice
2007 - 2009 Molecular mechanisms by which cold shock domain protein regulates freezing tolerance in plant.
2006 - 2007 トレハロースが誘導する植物防御機構の解明
2003 - 2004 Conserved mechanisms for cold adaptation in bacteria and higher plants
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Papers (106):
Chikako Kuwabara, Ryuji Miki, Nobuyuki Maruyama, Masanori Yasui, Haruyasu Hamada, Yozo Nagira, Yumiko Hirayama, Wataru Ackley, Feng Li, Ryozo Imai, Naoaki Taoka, Tetsuya Yamada. DNA-free and genotype-independent CRISPR/Cas9 system in soybean. Plant Physiology. 2025. in press
Kentaro Sasaki, Naozumi Mimida, Satoko Nonaka, Hiroshi Ezura, Ryozo Imai. A long shelf-life melon created via CRISPR/Cas9 RNP-based <i>in planta</I> genome editing. bioRxiv. 2024
Weifeng Luo, Yuelin Liu, Ryozo Imai. In Planta Genome Editing in Commercial Wheat Varieties: Use of TaQsd1 to Lengthen Seed Dormancy. Methods in molecular biology (Clifton, N.J.). 2024. 2830. 163-171
Daisuke Tezuka, Huikyong Cho, Hitomi Onodera, Qianyan Linghu, Takeshi Chijimatsu, Masahiro Hata, Ryozo Imai. Redirecting barley breeding for grass production through genome editing of Photoperiod-H1. Plant Physiology. 2024. 195. 1. 287-290
Tomoya Ota, Wataru Saburi, Takayoshi Tagami, Jian Yu, Shiro Komba, Linda Elizabeth Jewell, Tom Hsiang, Ryozo Imai, Min Yao, Haruhide Mori. Molecular mechanism for endo-type action of glycoside hydrolase family 55 endo-β-1,3-glucanase on β1-3/1-6-glucan. Journal of Biological Chemistry. 2023. 299. 11. 105294-105294
Plant and microbe adaptations to cold in a changing world : proceedings from Plant and Microbe Adaptations to Cold 2012
Springer 2013 ISBN:9781461482529
Education (3):
1987 - 1990 University of Tokyo Graduate Schoold of Agriculture Agricultural Chemistry
1985 - 1987 Tokyo Institute of Technology Interdisciplinary Graduate School of Science and Engineering Life Chemistry
1981 - 1985 Waseda University School of Science and Engineering Applied Chemistry
Professional career (3):
PhD (Univ. Tokyo)
Master of Science (Tokyo Institute of Technology)
Bachelor of Engineering (Waseda University)
Work history (6):
2022/04 - 現在 Institute of Agrobiological Sciences, National Agriculture and Food Research Organization Executive Researcher
2018/04 - 現在 Tokyo University of Science Applied Biological Sciences Adjunct Professot
2021/11 - 2024/03 University of Tsukuba Faculty of Life and Environmental Sciences Professor
2021/04 - 2022/03 Institute of Agrobiological Sciences, NARO Genome-edited Crop Development Group, Division of Crop Genome Editing, Group Leader
2016/04 - 2021/03 Institute of Agrobiological Sciences Division of Applied Genetics Senior Principal Researcher
2011/04 - 2016/03 Hokkaido Agricultural Research Center, NARO Crop Breeding Research Division Chief Researcher and Project Leader
2006/08 - Japan Society of Bioscience, Biotechnology, and Agochemistry, Hokkaido Branch Encouraging Award
Association Membership(s) (4):
JAPANESE SOCIETY FOR PLANT CELL AND MOLECULAR BIOLOGY
, THE JAPANESE SOCIETY FOR CHEMICAL REGULATION OF PLANTS
, THE JAPANESE SOCIETY OF PLANT PHYSIOLOGISTS
, JAPAN SOCIETY FOR BIOSCIENCE, BIOTECHNOLOGY, AND AGROCHEMISTRY