Rchr
J-GLOBAL ID:200901048062903806   Update date: May. 09, 2024

Ezawa Tatsuhiro

エザワ タツヒロ | Ezawa Tatsuhiro
Affiliation and department:
Job title: Associate Professor
Homepage URL  (2): http://www.agr.hokudai.ac.jp/botagr/rhizo/RhizoCont/index.htmlhttp://www.agr.hokudai.ac.jp/botagr/rhizo/RhizoCont/Rhizo_en.html
Research field  (1): Plant nutrition, soil science
Research keywords  (4): 植物栄養・土壌学 ,  Plant-microbe symbiosis ,  Plant physiology ,  Soil microbiology
Research theme for competitive and other funds  (18):
  • 2023 - 2026 Microbial networks as a basis of survival strategy in nutrient-deficient enviornment
  • 2021 - 2024 植物の土壌リン獲得シンドロームの解明と新たな陸域生態系リン循環モデルの構築
  • 2020 - 2023 Robustness and modeling of microbial symbiosis in plants: application of field transcriptomics
  • 2019 - 2022 セスバニア根粒菌の病原性と細胞内感染能:非マメ科植物への感染拡大に向けた基盤研究
  • 2017 - 2020 植物耐酸性研究の新展開:菌根形成による耐酸性獲得の生理・分子機構
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Papers (85):
  • Anjar Cahyaningtyas, Tatsuhiro Ezawa. Disturbance tolerance of arbuscular mycorrhizal fungi: characterization of life-history strategies along a disturbance gradient in a coastal dune ecosystem. Plant and Soil. 2023. 495. 1-2. 535-549
  • Tatsuhiro Ezawa, Alessandro Silvestri, Hayato Maruyama, Keitaro Tawaraya, Mei Suzuki, Yu Duan, Massimo Turina, Luisa Lanfranco. Structurally distinct mitoviruses: are they an ancestral lineage of the Mitoviridae exclusive to arbuscular mycorrhizal fungi (Glomeromycotina)?. mBio. 2023
  • Yusaku Sugimura, Ai Kawahara, Hayato Maruyama, Tatsuhiro Ezawa. Plant Foraging Strategies Driven by Distinct Genetic Modules: Cross-Ecosystem Transcriptomics Approach. Frontiers in Plant Science. 2022. 13
  • Matthias J. Salomon, Stephanie J. Watts-Williams, Michael J. McLaughlin, Heike Bücking, Brajesh K. Singh, Imke Hutter, Carolin Schneider, Francis M. Martin, Miroslav Vosatka, Liangdong Guo, et al. Establishing a quality management framework for commercial inoculants containing arbuscular mycorrhizal fungi. iScience. 2022. 25. 7. 104636-104636
  • Cuc Thi Nguyen, Tatsuhiro Ezawa, Katsuharu Saito. Polyphosphate polymerizing and depolymerizing activity of VTC4 protein in an arbuscular mycorrhizal fungus. Soil Science and Plant Nutrition. 2022. 68. 2. 256-267
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MISC (105):
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Patents (3):
  • 宿主植物と微生物との共生程度を推定する方法、および予測モデ ルを作成する方法
  • アーバスキュラー菌根菌の培養用培地及び培養方法
  • 法面緑化工法
Education (4):
  • 1992 - 1994 Chiba University Graduate School of Natural Science
  • - 1994 Chiba University Graduate School, Division of National Science and Technology
  • 1987 - 1989 Hokkaido University Graduate School of Agriculture
  • - 1989 Hokkaido University Graduate School, Division of Agriculture
Professional career (1):
  • 博士(農学) (北海道大学)
Work history (5):
  • 2004 - 現在 Hokkaido University Research Faculty of Agriculture Associate Prof.
  • 2000 - 2004 Nagoya University Graduate School of Bioagricultral Science Assistant Prof.
  • 1998 - 2000 Adelaide University, Australia Department of Soil and Water Research fellow
  • 1994 - 1998 Nagoya University Faculty of Agriculture Assistant Prof.
  • 1989 - 1992 Kyowa Hakko Kogyo Co., Ltd. Tsukuba Research Laboratories Researcher
Committee career (5):
  • 2020/05 - 現在 Frontiers in Microbiology Associate Editor
  • 2011 - 現在 Plant and Soil Section Editor
  • 2021/04 - 2023/03 Soil Science and Plant Nutrition Associate Editor-In-Chief
  • 2015 - 2020 The ISME Journal Editorial board member
  • 2009 - 2012 Soil Science and Plant Nutrition Editor
Awards (3):
  • 2022/05 - Japanese Sciety for Soil Science and Plant Nutrition Sciety Award Molecular bases and envrionmental responses of nutrient delivery in arbuscular mycorrhizal symbiosis
  • 2002 - 日本土壌肥料学会 奨励賞 パイオニア植物の侵入・定着における共生微生物の役割
  • 2001 - 東海学術奨励会 研究奨励賞 強酸性土壌の植生回復技術に関する基礎的研究:パイオニア植物の侵入・定着における共生微生物の役割
Association Membership(s) (4):
植物微生物研究会 ,  菌根研究会 ,  日本土壌肥料学会 ,  International Mycorrhiza Society
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