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J-GLOBAL ID:202001009579433730   Update date: Feb. 26, 2025

Kobayashi Kanae

コバヤシ カナエ | Kobayashi Kanae
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Affiliation and department:
Research field  (3): Environmental load reduction/restoration technology ,  Environmental dynamics ,  Ecology and environmental science
Research keywords  (7): anammox ,  nitrification ,  Stable isotope ratio measurement ,  Nitrogen cycle ,  深海堆積物 ,  Environmental microbiology ,  Wastewater treatment
Research theme for competitive and other funds  (3):
  • 2023 - 2026 深海堆積物中の微生物活動による窒素循環の可視化に挑む
  • 2021 - 2023 複雑に絡み合う窒素循環を新規多重同位体標識培養実験で紐解く
  • 2018 - 2021 アナモックス細菌の窒素・酸素同位体分別の解析:海洋窒素循環への寄与の推定
Papers (9):
  • Satoshi Okabe, Akimichi Kamizono, Seiya Kawasaki, Kanae Kobayashi, Mamoru Oshiki. Interspecific competition and adaptation of anammox bacteria at different salinities: Experimental validation of the Monod growth model with salinity inhibition. Water Research. 2025. 271. 122883-122883
  • Satoshi Okabe, Akimichi Kamizono, Lei Zhang, Seiya Kawasaki, Kanae Kobayashi, Mamoru Oshiki. Salinity Tolerance and Osmoadaptation Strategies in Four Genera of Anammox Bacteria: <i>Brocadia</i>, <i>Jettenia</i>, <i>Kuenenia</i>, and <i>Scalindua</i>. Environmental Science & Technology. 2024. 58. 12. 5357-5371
  • Mamoru Oshiki, Emi Morimoto, Kanae Kobayashi, Hisashi Satoh, Satoshi Okabe. Collaborative metabolisms of urea and cyanate degradation in marine anammox bacterial culture. ISME Communications. 2024. 4. 1
  • Satoshi Okabe, Shaoyu Ye, Xi Lan, Keishi Nukada, Haozhe Zhang, Kanae Kobayashi, Mamoru Oshiki. Oxygen tolerance and detoxification mechanisms of highly enriched planktonic anaerobic ammonium-oxidizing (anammox) bacteria. ISME Communications. 2023. 3. 1
  • Satoshi Okabe, Atsushi Kamigaito, Kanae Kobayashi. Maintenance power requirements of anammox bacteria "Candidatus Brocadia sinica" and "Candidatus Scalindua sp.". The ISME journal. 2021. 15. 12. 3566-3575
more...
Lectures and oral presentations  (33):
  • Nitrogen removal by anammox bacteria in the surface sediments of diverse Northwest Pacific deep-sea floor
    (The 14th Asian Symposium of Microbial Ecology (ASME) 2024)
  • Anammox bacteria contribute to fixed nitrogen loss in the deep-sea sediments.
    (2024)
  • Unraveling microbial nitrogen cycle in the deep-sea sediments
    (国立大学法人 東京農工大学 未来価値創造研究教育特区(FLOuRISH Institute), Doctor's Cafe #15, JAMSTEC Challenge to Ocean Researches from Diverse Fields 2024)
  • Combined molecular and stable isotopic analyses reveal the microbial nitrogen cycle in the deep-sea sediments
    (The 36th JSME 2023)
  • Remineralization of organic nitrogen compounds into ammonium in marine anammox bacterial culture
    (8th International Conference on Nitrification and Related Processes (ICoN8) 2023)
more...
Education (4):
  • 2018 - 2021 Hokkaido University Graduate School of Engineering
  • 2016 - 2018 Hokkaido University Graduate School of Engineering Environmental Engineering
  • 2016 - 2017 Ghent University (Belgium) Faculty of Bioscience Engineering The Center for Microbial Ecology and Technology (CMET)
  • 2012 - 2016 Hokkaido University School of Engineering
Work history (3):
  • 2024/04 - 現在 Japan Agency for Marine-Earth Science and Technology Institute for Extra-cutting-edge Science and Technology Avant-garde Research (X-star) Researcher II
  • 2021/04 - 2024/03 国立研究開発法人 海洋研究開発機構 超先鋭研究開発部門 超先鋭研究プログラム JAMSTEC Young Research Fellow
  • 2018/04 - 2021/03 Hokkaido University
Awards (6):
  • 2023/11 - The 36th JSME Outstanding presentation award (Rising to the Challenge Award) Combined molecular and stable isotopic analyses reveal the microbial nitrogen cycle in the deep-sea sediments
  • 2021/03 - 北海道大学 大塚賞
  • 2019/10 - International Conference on Nitrification and Related Processes ICoN6 Financial Support for Outstanding Students Abstract
  • 2018/03 - Japan Society on Water Environment Excellent presentation award ("Kurita Award"), 52nd Annual Conference of Japan Society on Water Environment
  • 2017/07 - Japan Society on Water Environment WET2017 Excellent Presentation Award A sulphur/limestone bed reactor enabling cost-efficient biological nitrate removal on regeneration water from ion exchange
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Association Membership(s) (3):
日本地球惑星科学連合 ,  日本微生物生態学会 ,  International society for microbial ecology
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

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