Rchr
J-GLOBAL ID:201601007142398964   Update date: Nov. 13, 2024

Mizuta Yoko

ミズタ ヨウコ | Mizuta Yoko
Affiliation and department:
Job title: Assistant professor
Homepage URL  (1): https://www.itbm.nagoya-u.ac.jp/ja/members/group/y-mizuta.php
Research field  (3): Morphology, anatomy ,  Cell biology ,  Plant genetics and breeding
Research keywords  (8): Plant reproduction ,  Pollen ,  live imaging ,  pollen tube guidance ,  Development ,  非対称分裂 ,  Genome editing ,  Plant breeding
Research theme for competitive and other funds  (21):
  • 2024 - 2031 Mechanisms of asymmetric division and differentiation during pollen development
  • 2024 - 2027 Pollen development and cell differentiation through asymmetric division
  • 2024 - 2026 Research on the regulatory mechanism of pollen male germ cell differentiation
  • 2023 - 2025 Mechanisms of male-female intercellular signaling that regulate one-to-one fertilization in plants
  • 2022 - 2025 Visualization and regulation of plant hunger and uptake signals for root to shoot communication (PI: Ryo Tabata, Nagoya University)
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Papers (32):
  • Yoko Mizuta, Daigo Sakakibara, Shiori Nagahara, Ikuma Kaneshiro, Takuya T Nagae, Daisuke Kurihara, Tetsuya Higashiyama. Deep imaging reveals dynamics and signaling in one-to-one pollen tube guidance. EMBO Reports. 2024
  • Naoya Sugi, Daichi Susaki, Yoko Mizuta, Tetsu Kinoshita, Daisuke Maruyama. Blue Light Irradiation Induces Pollen Tube Rupture in Various Flowering Plants. Plant And Cell Physiology. 2024
  • Yoko Mizuta, Daigo Sakakibara, Shiori Nagahara, Ikuma Kaneshiro, Takuya T. Nagae, Daisuke Kurihara, Tetsuya Higashiyama. Deep imaging revealed dynamics and signaling in one-to-one pollen tube guidance. bioRxiv. 2023
  • Yoko Mizuta. Biolistic-delivery-based pollen visualization and genome editing. BSJ-Review. 2023. 14. 21-29
  • Ikuma Kaneshiro, Masako Igarashi, Tetsuya Higashiyama, Yoko Mizuta. Target pollen isolation using automated infrared laser-mediated cell disruption. Quantitative Plant Biology. 2022. 3
more...
MISC (10):
  • 丸山 大輔, 水多 陽子, 山岡 尚平. 植物細胞の分化運命の制御と可塑性. 植物科学の最前線. 2023. 14. A. 1-2
  • Mizuta Yoko, Taki Masayasu. Plant imaging research promoted by interdisciplinary collaborations. Plant Morphology. 2021. 33. 1. 1-2
  • 洞出光洋, 水多陽子, 東山哲也, 新田英之. マイクロ流路を用いた花粉管細胞配列アッセイ. 化学とマイクロ・ナノシステム学会研究会講演要旨集. 2013. 27th
  • 水多陽子, 洞出光洋, 後藤宏旭, 加地範匡, 新田英之, 東山哲也. 花粉管ガイダンスの分子実体解明に向けて-マイクロ流体デバイスを用いた試み. Plant Morphology. 2013. 25. 1
  • 水多陽子, 洞出光洋, 加地範匡, 後藤宏旭, 新田英之, 東山哲也. 花粉管内標的遺伝子の機能阻害と花粉管誘引アッセイに対する新アプローチ. 日本植物生理学会年会要旨集. 2012. 53rd
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Patents (5):
  • A methods of introducing substances into pollen
  • Method of introducing substances into the generative cell
  • Target cell enritchment methods
  • A method for producing carriers bearing fine particles coated with substances to be introduced into cells for use in the particle bombardment
  • A methods of plants genome editing
Books (3):
  • ゲノム編集技術 ~実験上のポイント/産業利用に向けた研究開発動向と安全性周知
    株式会社 情報機構 2023 ISBN:9784865022421
  • エッセンシャル遺伝学・ゲノム科学 (原著第7版) 第9章
    化学同人 2021
  • Plant Transcription Factor
    Springer protocols 2018 ISBN:9781493986569
Lectures and oral presentations  (92):
  • Deep imaging reveals dynamics and signaling in one-to-one pollen tube guidance
    (The 10th International Symposium on Transformative Bio-Molecules (ISTbM-10) 2024)
  • オスとメスの巧みなやりとり -イメージングで解く植物の受精戦略-
    (名古屋大学 異分野融合推進セミナー(5) 2024)
  • 花粉発生過程のライブイメージングと一過的導入による分裂誘導
    (日本植物学会第88回大会 2024)
  • 花粉特異的ROPGEFsはC末モチーフを介したPRK6受容体との相互作用により花粉管の挙動を調節する
    (日本植物学会第88回大会 2024)
  • 二光子イメージングによる一対一の花粉管誘引ダイナミクスと多精拒否機構の解明
    (日本植物形態学会第36回総会・大会 受賞講演 2024)
more...
Works (8):
  • A Secret Inside Flowers
    Yoko Mizuta 2020 -
  • The Secret Life of Plants (National Geographic Magazine 2017 May)
    Daisuke Kurihara, Yoko Mizuta 2017 -
  • The Secret life of Plants, National Geographic Magazine, May 2017
    Daisuke Kurihara, Yoko Mizuta 2016 -
  • 植物の透明化(ケトル Vol.30)
    東山哲也 2016 -
  • めしべを丸ごと透明化(科学技術の美パネル展)
    水多 陽子 2016 -
more...
Education (2):
  • 2005 - 2010 The Graduate University for Advanced Studies
  • 2001 - 2005 Niigata University Faculty of Agriculture Department of Agrobiology
Professional career (1):
  • Ph.D. Science (The Graduate University for Advanced Studies)
Work history (6):
  • 2024/04 - 現在 Nagoya University ITbM Assistant professor
  • 2022/09 - 現在 Nagoya University Institute of Transformative Bio-Molecules Jr. PI
  • 2019/04 - 2024/03 Nagoya University Nagoya University YLC designated assistant professor
  • 2016/04 - 2019/03 JST ITbM, Nagoya University JST PRESTO
  • 2011/04 - 2016/03 Nagoya University ERATO Higashiyama Live-holonics communications, Graduate School of Science Project Researcher
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Committee career (4):
  • 2023/04 - 現在 The Japanese Society of Plant Physiologists Plant Science New Technology Working Group
  • 2020/07 - 現在 [Frontiers in Genome editing] Review Editor, Editorial Board of Genome Editing in Plants
  • 2020/04 - 2021/03 文部科学省 科学技術・学術政策研究所 科学技術予測センター(NISTEP) 専門調査員
  • 2020/09 - The 84th Annual Meeting of the Botanical Society of Japan
Awards (9):
  • 2024/09 - The Japanese Society of Plant Morphology Hirase Award Deep imaging reveals dynamics and signaling in one-to-one pollen tube guidance
  • 2021/09 - The 140th Meeting of the Japanese Society of Plant Breeding Best presentation Spatiotemporal analysis of growth phase transition and gibberellin biosynthesis in rice
  • 2020/01 - NIKON JOICO AWARD, Nikon Solutions Co., Ltd. Runner-pu Prize A Secret Inside Flowers
  • 2018/12 - The 4th Annual Meeting of the Agricultural Nakate symposisum Best presentation Pollen tube mediated plant modification
  • 2017/04 - The 11th Panel Exhibition of Beauty of Science and Technology Second prize Deep imaging of Arabidopsis thaliana pollinated pistil using plant transparency reagent
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Association Membership(s) (3):
THE JAPANESE SOCIETY OF PLANT PHYSIOLOGISTS ,  THE BOTANICAL SOCIETY OF JAPAN ,  THE JAPANESE SOCIETY OF PLANT MORPHOLOGY
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