Research keywords (2):
Acetic acid bacteria
, Bacterial genomics
Research theme for competitive and other funds (2):
2021 - 2024 Search and functional analysis of maturation genes for syntrophic propionate oxidation using genomic information
2014 - 2017 Comparative genomics and phenome analysis of closely related Acetic acid bacteria
Papers (90):
Motohiko Ogawa, Minenosuke Matsutani, Takashi Katayama, Nobuhiro Takada, Shinichi Noda, Mamoru Takahashi, Daisuke Kageyama, Nozomu Hanaoka, Hideki Ebihara. Discovery of a novel spotted fever group Rickettsia, “Candidatus Rickettsia kedanie,” in unfed larval chigger mites, Leptotrombidium scutellare. Microbiology and Immunology. 2024
Atsuko Hishida, Ryo Shirai, Akiyoshi Higo, Minenosuke Matsutani, Kaori Nimura-Matsune, Tomoko Takahashi, Satoru Watanabe, Shigeki Ehira, Yukako Hihara. CRISPRi knockdown of the cyabrB1 gene induces the divergently transcribed icfG and sll1783 operons related to carbon metabolism in the cyanobacterium Synechocystis sp. PCC 6803. The Journal of general and applied microbiology. 2024
Kosuke Kita, Ryosuke Unno, Takahiro Osada, Hiromori Yoshiyama, Sachiko Masaki, Sakura Nogimura, Minenosuke Matsutani, Morio Ishikawa, Toshihiro Suzuki. Relationship between microorganisms and volatile components in each fermentation process in the kusaya gravy that plays an important role in the manufacturing of kusaya, a traditional Japanese fermented fish product. Bioscience, biotechnology, and biochemistry. 2023. 88. 1. 111-122
Noppon Lertwattanasakul, Sornsiri Pattanakittivorakul, Sukanya Nitiyon, Minenosuke Matsutani, Akihiro Oguchi, Katsushi Hirata, Tomoyuki Kosaka, Savitree Limtong, Mamoru Yamada. Mutants with Enhanced Multi-Stress Tolerance of Kluyveromyces marxianus and Their Ability for Ethanol Fermentation. Fuels. 2023. 4. 4. 469-483
Nami Matsumoto, Minenosuke Matsutani, Yoko Tanimoto, Rina Nakanishi, Shuhei Tanaka, Yu Kanesaki, Gunjana Theeragool, Naoya Kataoka, Toshiharu Yakushi, Kazunobu Matsushita. Implication of amino acid metabolism and cell surface integrity for the thermotolerance mechanism in the thermally adapted acetic acid bacterium Acetobacter pasteurianus TH-3. Journal of bacteriology. 2023. 205. 11. e0010123