Rchr
J-GLOBAL ID:201801004124518583
Update date: Nov. 11, 2024
Komaki Shinichiro
Komaki Shinichiro
Affiliation and department:
Research field (1):
Plants: molecular biology and physiology
Research theme for competitive and other funds (9):
- 2024 - 2027 キネトコア構造から探る植物ゲノムの可塑性
- 2021 - 2024 Plant genome plasticity resulting from the alteration of the M phase checkpoint
- 2020 - 2022 ゲノム倍加植物の誕生に関わるMCC複合体の抑制機構
- 2019 - 2021 ゲノム倍加植物誕生の鍵として働く紡錘体形成チェックポイントの解析
- 2018 - 2021 植物の減数分裂におけるSpindle assembly checkpointの解析
- 2018 - 2020 高頻度に起こる植物のゲノム倍加の分子機構
- 2018 - 2019 植物の減数分裂における紡錘体形成チェックポイント制御機構の解析
- 2018 - 2019 なぜ植物は高頻度にゲノム倍加を起こすのか?
- 2011 - 2014 Post-translatioinal modification in plant meristem
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Papers (22):
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Aladár Pettkó-Szandtner, Zoltan Magyar, Shinichiro Komaki. Functional framework of the kinetochore and spindle assembly checkpoint in Arabidopsis thaliana. bioRxiv. 2024
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Kittiya Tantisuwanichkul, Shinichiro Komaki, Mutsumi Watanabe, Takayuki Tohge, Supaart Sirikantaramas. Unveiling the regulatory role of DzAGL6-1 in carotenoid biosynthesis during durian (Durio zibethinus) fruit development. Plant cell reports. 2024. 43. 9. 217
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Konstantinos Lampou, Fransziska Böwer, Shinichiro Komaki, Maren Köhler, Arp Schnittger. A cytological and functional framework of the meiotic spindle assembly checkpoint in Arabidopsis thaliana. 2023
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Shinichiro Komaki, Eelco C Tromer, Geert De Jaeger, Nancy De Winne, Maren Heese, Arp Schnittger. Molecular convergence by differential domain acquisition is a hallmark of chromosomal passenger complex evolution. Proceedings of the National Academy of Sciences of the United States of America. 2022. 119. 42. e2200108119
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Viola Kuttig, Jason Sims, Yuki Hamamura, Shinichiro Komaki, Maren Köhler, Sara Christina Stolze, Joke De Jaeger-Braet, Hasibe Tuncay Elbasy, Hirofumi Nakagami, Antonio Virgilio Failla, et al. The cohesin subunit RAD21.2 functions as a recombination silencer of ribosomal DNA arrays. bioRxiv. 2022
more...
MISC (3):
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Komaki S., Nonomura T., Kakutani K., Matsuda Y., Toyoda H. (66) Suppression of Fusarium oxysporum by 5-fluoroindole (5-FI) and Molecular Breeding of 5-FI Resistant Plants (V). : Analysis of Expression of a Modified Anthranilate Synthetase Gene Introduced into Arabidopsis and Tomato Plants(Abstracts of the Papers Presented at the Annual Meeting of the Society, Fukuoka, March 28-30, 2004). Annals of the Phytopathological Society of Japan. 2004. 70. 3. 208-208
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福元健志, 野々村照雄, 松田克礼, 小牧伸一郎, 森浦展行, 沢辺昭義, 角谷晃司, 豊田秀吉. 緑色蛍光タンパク質生産遺伝子発現を利用したトマト毛状根形成効率の遺伝子工学的解析. 近畿大学薬学総合研究所紀要. 2004. 12
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Komaki S., Nonomura T., Fukumoto T., Kakutani K., Matsuda Y., Toyoda H. Suppression of Fusarium oxysporum by 5-fluoroindole (5-FI) and Molecoular Breeding of 5-FI Resistant Plants (IX). Cloning of Modified Anthranilate Synthetase Gene (masa) from Arabidopsis thaliana(Abstracts of the Papers Presented at the 2003 Annual Meeting in Tokyo). Annals of the Phytopathological Society of Japan. 2003. 69. 3. 291-291
Books (3):
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M期チェックポイントから探る植物ゲノムの可塑性
アグリバイオ 2023
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Spindle assembly checkpoint in plants
BSJ-Review vol. 9 2018
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Mechanisms underlying the size regulation according to cell division and elongation in plant.
Shokutyo 2011
Lectures and oral presentations (68):
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キネトコアから探る植物ゲノムの可塑性
(第21回細胞周期合同セミナー 2024)
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Cross-species comparison of metabolomic profiles of Brassica plants under different stress conditions
(The 20th Annual Conference of the Metabolomics Society 2024)
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A Functional Framework of the Kinetochore in Flowering Plants
(2024)
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Interspecific Comparison of Metabolite Variability in Rice under Low Temperature Stress
(2024)
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Cross-species metabolomic analysis of polyphenol metabolic response under UV-B exposure among Solanaceae species
(2024)
more...
Professional career (1):
- バイオサイエンス博士 (奈良先端科学技術大学院大学)
Work history (4):
- 2017/07 - 現在 Nara Institute of Science and Technology, Japan. Assistant Professor
- 2014/05 - 2017/06 University of Hamburg, Germany. Postdoctoral Researcher
- 2013/03 - 2014/04 IBMP-CNRS, France. Postdoctoral Researcher
- 2010/04 - 2013/03 RIKEN, Yokohama, Japan. Research Scientist
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