Rchr
J-GLOBAL ID:201901005287367934
Update date: Sep. 24, 2024
Mori Fumiaki
Mori Fumiaki
Affiliation and department:
Job title:
Specially Appointed Assistant Professor
Research field (1):
Atmospheric and hydrospheric science
Research keywords (2):
貧酸素水塊
, Microbial Ecology
Research theme for competitive and other funds (8):
- 2024 - 2027 貧酸素海域における炭素循環:化学合成独立栄養微生物の一次生産機能の実態と影響解明
- 2023 - 2024 高圧培養実験と天然堆積物試料の解析から迫る海底下高圧環境の炭素循環
- 2021 - 2024 闇から青へ-超閉鎖海域の貧酸素水塊発生と海洋生物のカーボンフローの劇的変化
- 2022 - 2024 貧酸素海域で化学合成独立栄養細菌が担う一次生産機能の評価
- 2021 - 2024 高圧培養実験と天然堆積物試料の解析から迫る海底下高圧環境の炭素循環
- 2019 - 2021 Effect of oxygenation of coastal hypoxia on sediment microbial community composition and activity
- 2018 - 2019 硫黄酸化細菌は貧酸素水塊を維持する原因微生物か?
- 2014 - 2015 大規模な貧酸素化をもたらす閉鎖性内湾の水塊構造と堆積物細菌群集による嫌気呼吸のリンケージ
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Papers (11):
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Fumiaki Mori, Akira Ijiri, Tomoya Nishimura, Taisuke Wakamatsu, Nozomi Katsuki, Yuki Morono. Cultivation of Piezotolerant and Piezophilic Hyperthermophiles with a Newly Developed Constant High Pressure and Temperature Culturing and Monitoring System. Microbes and Environments. 2023. 38. 6
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Taisuke Wakamatsu, Saki Mizobuchi, Fumiaki Mori, Taiki Futagami, Takeshi Terada, Yuki Morono. Construction of Aerobic/Anaerobic-Substrate-Induced Gene Expression Procedure for Exploration of Metagenomes From Subseafloor Sediments. Frontiers in Microbiology. 2022. 12. 726024-726024
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Fumiaki Mori, Yu Umezawa, Ryuji Kondo, Gregory N. Nishihara, Minoru Wada. Potential oxygen consumption and community composition of sediment bacteria in a seasonally hypoxic enclosed bay. PeerJ. 2021. 9. e11836-e11836
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Fumiaki Mori, Tomoya Nishimura, Taisuke Wakamatsu, Takeshi Terada, Yuki Morono. Simple In-liquid Staining of Microbial Cells for Flow Cytometry Quantification of the Microbial Population in Marine Subseafloor Sediments. Microbes and environments. 2021. 36. 3
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Fumiaki Mori, Minoru Wada. Evaluation of sulfate-reducing bacteria community composition in surface sediment of a seasonally hypoxic enclosed bay as assessed using dsrA and 16S rRNA genes. Proceedings of the 2019 International conference on climate change, disaster management and environmental sustainability. 2019. 1. 702-708
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MISC (7):
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MORI Fumiaki, WADA Minoru. Interaction Between Sediment Microbial Community and Coastal Hypoxia. Bulletin on Coastal Oceanography. 2024. 62. 1. n/a
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森郁晃, 青柳智, 堀知行, 諸野祐樹, 和田実. Effects of re-oxygenation of coastal hypoxia on the sediment chemolithoautotrophic microbial community and activity. 日本微生物生態学会大会(Web). 2023. 36th
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大塚健人, 鷲尾昂祐, 森郁晃, 内田淳, 青島隆, 石松惇, 和田実. 大村湾の貧酸素水塊の発達と生物応答 2)化学合成独立栄養細菌は内湾の酸性化を抑制するか?. 日本水産学会大会講演要旨集. 2019. 2019. 104
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大塚健人, 鷲尾昂祐, 森郁晃, 内田淳, 青島隆, 石松惇, 和田実. 化学合成独立栄養細菌は内湾の酸性化を抑制する. 日本微生物生態学会大会(Web). 2019. 33rd. 88 (WEB ONLY)
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伊藤尚斗, 大塚健人, 森郁晃, 内田淳, 青島隆, 近藤能子, 和田実. 閉鎖性内湾底層における無機態窒素とアンモニア酸化古細菌の動態. 日本微生物生態学会大会(Web). 2019. 33rd. 87 (WEB ONLY)
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Lectures and oral presentations (13):
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Effects of re-oxygenation of coastal hypoxia on active chemolithoautotrophic microbial communities in marine sediments
(The 14th Asian Symposium on Microbial Ecology 2024)
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Survival Strategies of Submarine Microorganisms by Attachment to Diatom Fossils
(The 13th ASME 2023)
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Effects of re-oxygenation of coastal hypoxia on the sediment chemolithoautotrophic microbial community and activity
(2023)
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Measuring microbial growth and metabolic processes at high hydrostatic pressure and temperature using a novel cultivation system
(2023)
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海底堆積物表層の微生物群集と貧酸素水塊の相互作用
(沿岸海洋シンポジウム 「閉鎖性水域における貧酸素水塊の現状と未来 -長期変化と物質循環との関わり」 2023)
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Professional career (1):
Awards (2):
- 2022/04 - Asian Symposium on Microbial Ecology ASME Young Scientist Award
- 2016/03 - 日本海洋学会沿岸海洋研究会 速水論文賞
Association Membership(s) (2):
THE OCEANOGRAPHIC SOCIETY OF JAPAN
, THE JAPANESE SOCIETY OF MICROBIAL ECOLOGY
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