Rchr
J-GLOBAL ID:202001016793760949
Update date: Oct. 23, 2024
Amano Fukuda Mayu
フクダ マユ | Amano Fukuda Mayu
Affiliation and department:
Research field (3):
Morphology, anatomy
, Cell biology
, Molecular biology
Research theme for competitive and other funds (6):
Papers (5):
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Mayu Fukuda, Marika Mieda, Ryosuke Sato, Satoru Kinoshita, Takaaki Tomoyama, Ali Ferjani, Masayoshi Maeshima, Shoji Segami. Lack of Vacuolar H+ -Pyrophosphatase and Cytosolic Pyrophosphatases Causes Fatal Developmental Defects in Arabidopsis thaliana. Frontiers in Plant Science. 2020. 11. 655-672
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Hiroshi Uno, Natsuki Tanaka-Takada, Momoko Hattori, Mayu Fukuda, Masayoshi Maeshima. A cell-wall protein SRPP provides physiological integrity to the Arabidopsis seed. Journal of Plant Research. 2019. 132. 1. 145-154
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Shoji Segami, Takaaki Tomoyama, Shingo Sakamoto, Shizuka Gunji, Mayu Fukuda, Satoru Kinoshita, Nobutaka Mitsuda, Ali Ferjani, Masayoshi Maeshima. Vacuolar H+-Pyrophosphatase and cytosolic soluble pyrophosphatases cooperatively regulate pyrophosphate levels in Arabidopsis thaliana. The Plant Cell. 2018. 30. 5. 1040-1061
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Shoji Segami, Mariko Asaoka, Satoru Kinoshita, Mayu Fukuda, Yoichi Nakanishi, Masayoshi Maeshima. Biochemical, Structural and Physiological Characteristics of Vacuolar H+-Pyrophosphatase. Plant and Cell Physiology. 2018. 59. 7. 1300-1308
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Mayu Fukuda, Shoji Segami, Takaaki Tomoyama, Mariko Asaoka, Yoichi Nakanishi, Shizuka Gunji, Ali Ferjani, Masayoshi Maeshima. Lack of H+-pyrophosphatase Prompts Developmental Damage in Arabidopsis Leaves on Ammonia-Free Culture Medium. FRONTIERS IN PLANT SCIENCE. 2016. 7. 819-830
MISC (2):
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Jun Mukai, Mayu Fukuda. Development of epigenome therapeutics for schizophrenia. Journal of Clinical Experimental Medicine. 2023. 286. 6. 545-553
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福田茉由, 向井淳. 統合失調症の認知機能障害を改善するエピゲノム治療薬の開発. 精神科. 2021. 38. 2. 220-228
Education (3):
- 2015 - 2018 名古屋大学大学院 生命農学研究科 博士後期課程
- 2013 - 2015 名古屋大学大学院 生命農学研究科 博士前期課程
- 2009 - 2013 名古屋大学 農学部 応用生命科学科
Professional career (1):
Work history (6):
Awards (1):
- 2017/10 - 日本農芸化学会 中部支部例会 学術奨励賞 ピロリン酸蓄積が引き起こすシロイヌナズナの形態変化と窒素源の関連
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