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J-GLOBAL ID:200901014129259999   Update date: Mar. 31, 2025

Fukayama Hiroshi

フカヤマ ヒロシ | Fukayama Hiroshi
Affiliation and department:
Job title: Associate Professor
Research field  (1): Crop production science
Research keywords  (3): starch synthesis ,  photosynthesis ,  Rubisco
Research theme for competitive and other funds  (9):
  • 2024 - 2029 Production of plants with high photosynthetic capacity by chloroplast genome editing technology and elucidation of its mechanism
  • 2023 - 2026 イネ科作物の栄養器官におけるデンプン合成制御メカニズムの解明
  • 2020 - 2023 Rubiscoの触媒特性改変による光合成能力の改良と構造機能相関の解明
  • 2019 - 2020 Unraveling of the control mechanism of starch synthesis in vegetative organs of plants
  • 2015 - 2019 RubiscoのC4化によるイネの光合成能力の改良
Show all
Papers (59):
  • Daisuke Sasayama, Natsuki Hayashi, Shunsuke Oe, Hiroshi Fukayama, Tomoko Hatanaka, Tetsushi Azuma. Submergence-Tolerant Rice Cultivar FR13A Harbors Floating Genes SNORKELs but Lacks Floating Ability. Rice Science. 2025
  • Fumihiro Miyagawa, Ryutaro Morita, Mai Tohbe, Daisuke Sasayama, Tomoko Hatanaka, Tetsushi Azuma, Hiroshi Fukayama. Difference in responsiveness of expressions of starch synthesis-related genes to CRCT among rice cultivars. Plant Production Science. 2024. 27. 3. 221-228
  • Fumihiro Miyagawa, Naoki Shibatani, Ryutaro Morita, Daisuke Sasayama, Tomoko Hatanaka, Tetsushi Azuma, Hiroshi Fukayama. Effects of knockout of CO2-responsive CCT protein, a regulator of starch synthesis on physiological characteristics of rice. Plant Production Science. 2023. 26. 3. 273-286
  • Yu Sugimura, Hiroshi Fukayama, Hiroyasu Michiyama, Tatsuya Hirano. The relationship between beta-amylase and the degradation of starch temporarily stored in rice leaf blades. BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY. 2023
  • Quanshu Luo, Daisuke Sasayama, Misaki Nakazawa, Tomoko Hatanaka, Hiroshi Fukayama, Tetsushi Azuma. Deepwater response in the African cultivated rice Oryza glaberrima. Plant Production Science. 2023. 26. 1. 1-11
more...
MISC (65):
  • 宮川文宏, 森田隆太郎, 笹山大輔, 畠中知子, 東哲司, 深山浩. Responsiveness of Expression of Starch Synthesis-Related Genes to CRCT in Vegetative Organs of Rice. 日本作物学会講演会要旨集. 2023. 255th
  • 松下大輝, 永山大貴, 志村華子, 森田隆太郎, 深山浩, 藤野介延. Responses to phytohormones in Potato StCRCT-overexpressing line. 日本作物学会講演会要旨集. 2022. 254th
  • Hiroshi Fukayama, Hiroyoshi Matsumura. Improvement of photosynthetic capacity and crop productivity by the enhancement of Rubisco catalytic activity in rice. News letter. 2021. 31. 2. 110-119
  • 森田隆太郎, 高橋陽希, 三浦聡子, CROFTS Naoko, CROFTS Naoko, 深山浩, 青木直大, 藤田直子. Functional Analysis of Granule-bound Starch Synthase (GBSS) II, Which Expressed in Vegetative Organs of Rice (Oryza Sativa. L). 日本作物学会講演会要旨集. 2021. 251st
  • 高橋陽希, 森田隆太郎, 三浦聡子, クロフツ尚子, 青木直大, 深山浩, 藤田直子. イネの栄養器官で発現する澱粉粒結合型スターチシンターゼ(GBSS)IIの機能解析. 応用糖質科学. 2021. 11. 2
more...
Books (1):
  • バイオスティミュラントハンドブック: 植物の生理活性プロセスから資材開発、適用事例まで
    エヌ・ティー・エス 2022 ISBN:4860437691
Lectures and oral presentations  (86):
  • Improving Photosynthetic CO2 Fixation by Introducing C4-Like Rubisco into a C3 Plant, Rice
    (2nd Asia-Oceania International Congress on Photosynthesis 2024)
  • SNORKELs and Deepwater Response in the African Cultivated Rice Oryza glaberrima
    (10th Asian Crop Science Association Conference 2021)
  • Adaptive Responses to Flood in Wild Rice Species with Various Genomes Other Than AA
    (10th Asian Crop Science Association Conference 2021)
  • Highly Active Vernonia galamensis DGAT1 Can Effectively Increase Oil Levels in Yeast, Soybean and Arabidopsis
    (10th Asian Crop Science Association Conference 2021)
  • A Challenge for the Improvement of Photosynthetic Capacity by the Introduction of C4 -Like Rubisco in Rice
    (10th Asian Crop Science Association Conference 2021)
more...
Education (3):
  • 1995 - 1998 Kobe University Graduate School of Science and Technology
  • 1993 - 1995 神戸大学大学院 農学研究科 園芸農学専攻修士課程
  • 1989 - 1993 Kobe University Faculty of Agriculture
Professional career (2):
  • 修士(農学) (神戸大学)
  • 博士(学術) (神戸大学)
Work history (6):
  • 2023/04 - 現在 神戸大学大学院 農学研究科 教授
  • 2016/04 - 2023/03 神戸大学大学院農学研究科 准教授
  • 2006/12 - 2016/03 神戸大学大学院農学研究科
  • 2003/04 - 2006/11 農業生物資源研究所
  • 1999/10 - 2003/03 農業生物資源研究所
Show all
Awards (3):
  • 2021/10 - Rikusou Best Paper Award Hybrid Rubisco with Complete Replacement of Rice Rubisco Small Subunits by Sorghum Counterparts Confers C4 Plant-like High Catalytic Activity
  • 2019/03 - Japanese Society of Crop Science Research Award
  • 2016/10 - Rikusou Kai Rikusou Best Paper Award CO2-responsive CONSTANS, CONSTANS-like, and time of chlorophyll a/b binding protein Expression1 protein is a positive regulator of starch synthesis in vegetative organs of rice.
Association Membership(s) (3):
日本光合成研究会 ,  日本植物生理学会 ,  日本作物学会
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