Rchr
J-GLOBAL ID:200901042401321880
Update date: Jul. 28, 2024
MIYAUCHI Keisuke
ミヤウチ ケイスケ | MIYAUCHI Keisuke
Affiliation and department:
Job title:
Professor
Research field (2):
Environmental load reduction/restoration technology
, Applied microbiology
Research keywords (4):
bioremediation
, molecular microbiology
, 分子微生物工学
, bioremediation biodegradation
Research theme for competitive and other funds (21):
- 2023 - 2027 Development of arsenic-contaminated groundwater purification technology to secure safe water resources in the Mekong Delta
- 2019 - 2023 Elucidation and application of hyperaccumulating functions of plants towards remediation of heavy metals contamination
- 2019 - 2022 Characterization of a novel bacteria responsible for the arsenite oxidation in the rhizosphere of arsenic hyper-accumulator, Pteris vittata
- 2018 - 2022 東南アジア・南アジアにおけるヒ素汚染地下水の生物学的浄化方法の開発
- 2017 - 2021 Development of an engineering method to make a contaminant-degrading bacterium survive in the field where indigenous protist exist
- 2016 - 2019 Development of a hybrid soil remediation system using arsenic-mobilizing bacteria and an arsenic hyperaccumulator plant
- 2016 - 2019 Development of arsenic detection and quantification systems using bacteria
- 2014 - 2017 Development of core technologies for improving existence of bacteria released to the environment to attain an efficient bio-augmentation
- 2012 - 2016 Research on the biological technology for purification of arsenic contamination to supply safe drinking water in South East Asia
- 2012 - 2015 Investigation of a novel transcriptional repression mechanism of PCB degradation genes
- 2010 - 2012 Analysis of protozoa in the natural environment for bioaugmentation
- 2009 - 2012 Study on utilization technology of oxygen-tolerant denitrifying microorganisms in sewage and wastewater treatment to prevent global warming
- 2009 - 2011 Development of in situ bioremediation technology to prevent repetition of Minamata disease in the world
- 2008 - 2010 A novel network regulating the expression of PCB deRradation Renes.
- 2006 - 2007 ジベンゾフラン分解を司る転写制御因子の機能解析
- 2004 - 2006 Characterization of molecular mechanism for transcriptional induction of PCB degradation system
- 2004 - 2005 PCB分解酵素系における新規転写制御メカニズムの解明
- 1999 - 1999 農薬BHC分解菌をモデルとした細菌の新規物質に対する効率的代謝経路獲得機構の解析
- 1998 - 1998 細菌由来のγ-HCH分解関与遺伝子群の単離とそれを利用した環境浄化法の研究
- 難分解性物質の微生物による分解に関する研究
- Studies on biodegradation of xenobiotics
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Papers (68):
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Yi Huang-Takeshi Kohda, Keisuke Miyauchi, Farzana Rahman, Haruki Naruse, Mitsuaki Mito, Nobuyuki Kitajima, Mei-Fang Chien, Ginro Endo, Chihiro Inoue. Effects of temperature on plant growth and arsenic removal efficiency of Pteris vittata in purifying arsenic-contaminated water in winter: A two-year year-round field study. Chemosphere. 2024. 362. 142902-142902
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Kafayat Olaide Yusuf Habibullah, Ren Ito, Leonardo Stari, Kouhei Kishida, Yoshiyuki Ohtsubo, Eiji Masai, Masao Fukuda, Keisuke Miyauchi, Yuji Nagata. Degradation of DDT by γ-hexachlorocyclohexane dehydrochlorinase LinA. Bioscience, biotechnology, and biochemistry. 2023. 88. 1. 123-130
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Yi Huang-Takeshi Kohda, Ginro Endo, Nobuyuki Kitajima, Kazuki Sugawara, Mei-Fang Chien, Chihiro Inoue, Keisuke Miyauchi. Arsenic uptake by Pteris vittata in a subarctic arsenic-contaminated agricultural field in Japan: An 8-year study. Science of The Total Environment. 2022. 831. 154830-154830
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Yi Huang-Takeshi Kohda, Zhaojie Qian, Mei-Fang Chien, Keisuke Miyauchi, Ginro Endo, Nobuo Suzui, Yong-Gen Yin, Naoki Kawachi, Hayato Ikeda, Hiroshi Watabe, et al. New evidence of arsenic translocation and accumulation in Pteris vittata from real-time imaging using positron-emitting 74As tracer. Scientific Reports. 2021. 11. 1
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Mei-Fang Chien, Ying-Ning Ho, Hui-Erh Yang, Masaru Narita, Keisuke Miyauchi, Ginro Endo, Chieh-Chen Huang. Identification of a Novel Arsenic Resistance Transposon Nested in a Mercury Resistance Transposon of Bacillus sp. MB24. Microorganisms. 2019. 7. 11. 566-576
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MISC (211):
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遠藤銀朗, 上明戸京, 本庄勇葵, 宮内啓介. コークス担体と亜ヒ酸酸化細菌を用いるヒ素汚染地下水の浄化. 環境バイオテクノロジー学会大会プログラム講演要旨集. 2018. 2018. 33
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武田尚, 宮内啓介, 若菜大悟, 細江智夫. Sphingobium sp.BD3100株のベルベリン脱メチレン化酵素遺伝子の転写誘導. 環境バイオテクノロジー学会大会プログラム講演要旨集. 2018. 2018. 55
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宮内啓介, 森秀成, 阿部凌平, 堀内孝人, 遠藤銀朗. ヒ素高蓄積植物モエジマシダ根圏からの亜ヒ酸酸化細菌の単離と解析. 日本農芸化学会大会講演要旨集(Web). 2018. 2018. ROMBUNNO.3A11a07 (WEB ONLY)
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宮内啓介. ヒ素高蓄積植物を用いたヒ素汚染の浄化. 東北学院大学工学総合研究所紀要(CD-ROM). 2018. 7. ROMBUNNO.1-1-1
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富田尚樹, 宮内啓介. 細菌を用いたヒ素検出システムの構築. 東北学院大学工学総合研究所紀要(CD-ROM). 2018. 7. ROMBUNNO.1-2-1
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Education (4):
- - 1999 The University of Tokyo
- - 1999 The University of Tokyo
- - 1994 The University of Tokyo
- - 1994 The University of Tokyo Faculty of Agriculture
Professional career (1):
Work history (7):
- 2012/04 - 現在 Tohoku Gakuin University
- 2006/04 - 2012/03 Tohoku Gakuin University
- 2000/04 - 2006/03 - 長岡技術科学大学 助手
- 1999 - 2000 日本学術振興会 特別研究員
- 1999 - 2000 Research Fellow of the Japan Society for
- 2000 - - Nagaoka University of Technology, Research Assistant
- the Promotion of Science
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Association Membership(s) (5):
米国微生物学会
, ゲノム微生物学会
, 環境バイオテクノロジー学会
, 日本生物工学会
, 日本農芸化学会
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