Rchr
J-GLOBAL ID:200901003166829370   Update date: Nov. 11, 2024

Tamaki Hideyuki

タマキ ヒデユキ | Tamaki Hideyuki
Affiliation and department:
Job title: Deputy Director/Group Leader
Homepage URL  (1): http://www.aist.go.jp/RESEARCHERDB/cgi-bin/worker_detail.cgi?call=namae&rw_id=H55563215
Research field  (4): Ecology and environmental science ,  Biodiversity and systematics ,  Systems genomics ,  Applied microbiology
Research keywords  (1): yet-to-be cultured microorganisms, cultivation, environmental omits, metagenomics, microbial ecology, microbial functions, microbiome
Research theme for competitive and other funds  (19):
  • 2023 - 2028 Enigmatic archaea in subsurface environments
  • 2020 - 2024 炭層環境における微生物起源CBM形成メカニズムの解明およびCBM増産技術の開発
  • 2019 - 2024 難培養性の ポストコッホ微生物の可培養化
  • 2020 - 2023 A study for intestinal archaea in human health and disease
  • 2018 - 2023 methanogenesis from root organic matters in deep subsurface
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Papers (157):
  • Ryosuke Nakai, Hiroyuki Kusada, Fumihiro Sassa, Ayaka Makino, Susumu Morigasaki, Hisayoshi Hayashi, Naoki Takaya, Hideyuki Tamaki. Roseiterribacter gracilis gen. nov., sp. nov., a novel filterable alphaproteobacterium isolated from soil using a gel-filled microwell array device. PLOS ONE. 2024. 19. 6. e0304366
  • Taiki Katayama, Masaru K Nobu, Hiroyuki Imachi, Naoki Hosogi, Xian-Ying Meng, Kana Morinaga, Hideyoshi Yoshioka, Hiroshi A Takahashi, Yoichi Kamagata, Hideyuki Tamaki. A Marine Group A isolate relies on other growing bacteria for cell wall formation. Nature microbiology. 2024
  • Hiroki Kawamoto, Miho Watanabe, Hanako Mochimaru, Nozomi Nakahara, Xiang-Ying Meng, Sachiko Sakamoto, Kana Morinaga, Taiki Katayama, Hideyoshi Yoshioka, Nobuhiko Nomura, et al. Atrimonas thermophila gen. nov., sp. nov., a novel anaerobic thermophilic bacterium of the phylum Atribacterota isolated from deep subsurface gas field and proposal of Atrimonadaceae fam. nov. within the class Atribacteria in the phylum Atribacterota. Systematic and applied microbiology. 2024. 47. 4. 126515-126515
  • Yasuhiro Tanaka, Erina Tozawa, Tomoki Iwashita, Yosuke Morishita, Hideyuki Tamaki, Tadashi Toyama, Masaaki Morikawa, Yoichi Kamagata, Kazuhiro Mori. Successful Isolation of Diverse Verrucomicrobiota Strains through the Duckweed-Microbes Co-cultivation Method. Microbes and environments. 2024. 39. 3
  • Yuga Hirakata, Ran Mei, Kana Morinaga, Taiki Katayama, Hideyuki Tamaki, Xian-Ying Meng, Takahiro Watari, Takashi Yamaguchi, Masashi Hatamoto, Masaru K Nobu. Identification and cultivation of anaerobic bacterial scavengers of dead cells. The ISME journal. 2023
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MISC (65):
  • 平片悠河, 延優, MEI Ran, 森永花菜, 玉木秀幸, MENG Xian-ying, 渡利高大, 幡本将史, 山口隆司, 山口隆司. Cultivation of anaerobic dead cell scavenger. 日本微生物生態学会大会(Web). 2023. 36th
  • 山本京祐, 黒田恭平, 一色理乃, 時沢里保, 椎葉千慧, 中山敦好, 日野彰大, 山野尚子, 臼井絵里香, 宮川知世, et al. Identification of degrading microorganisms in accelerated tests to evaluate marine biodegradability of biodegradable plastics. 日本微生物生態学会大会(Web). 2023. 36th
  • 黒田恭平, 山本京祐, 一色理乃, 時沢里保, 椎葉千慧, 山野尚子, 日野彰大, 中山敦好, 臼井絵里香, 三浦隆匡, et al. Evaluation of biodegradability of biodegradable plastics in anaerobic marine sediments. 日本微生物生態学会大会(Web). 2023. 36th
  • 中井 亮佑, 草田 裕之, 玉木 秀幸. 培養技術の革新で迫る未知微生物の実態. 環境バイオテクノロジー学会誌. 2022. 22. 75-80
  • Technical studies for preparing microbial EOR pilot in domestic oil field : From laboratory scale microbial cultivation to well scale pilot planning. 2018. 83. 6. 455-460
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Lectures and oral presentations  (15):
  • 植物に共生するStreptomyces属放線菌の水素酸化活性に根滲出物が与える影響の解明
    (植物微生物研究会研究交流会講演要旨集 2014)
  • 植物根圏における高親和性水素酸化細菌の生理生態学的特性の解明
    (日本土壌微生物学会講演要旨集 2014)
  • 大気中の水素ガスを取り込む『水素固定エンドファイト』の発見
    (植物微生物研究会研究交流会講演要旨集 2013)
  • 水素固定エンドファイト:水素ガスが大気圏から植物圏に取り込まれる過程に関わる微生物の分離と機能解明
    (日本微生物生態学会講演要旨集 2013)
  • 高親和性水素酸化活性を有する植物内生Streptomyces属放線菌の分離
    (日本放線菌学会大会講演要旨集 2013)
more...
Awards (2):
  • 2019/10 - Japan Bioindustry Association Third Japan Bioindustry Association Encouragement Award
  • 2018/07 - 日本微生物生態学会 第3回日本微生物生態学会奨励賞
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