ホーム > 松村 崇志/ MATSUMURA, Takashi
松村 崇志
MATSUMURA, Takashi
理学部 海洋自然科学科生物系 , 助教 Faculty of Science Department of Chemistry, Biology and Marine , Assistant Professor

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ストレスにさらされた昆虫個体の死に必要な遺伝子を発見
2025-09-12
松村 崇志 丹羽 隆介
オープンアクセス版の論文は「つくばリポジトリ」で読むことができます。
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1.
Stress-induced organismal death is genetically regulated by the mTOR-Zeste-Phae1 axis
Takashi Matsumura; Masasuke Ryuda; Hitoshi Matsumoto; Takumi Kamiyama (+4 著者) Ryusuke Niwa
Proceedings of the National Academy of Sciences 127: (2025) Semantic Scholar
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2.
Drosophila cytokine GBP2 exerts immune responses and regulates GBP1 expression through GPCR receptor Mthl10.
Masaya Ono; Takashi Matsumura; Eui Jae Sung; Takashi Koyama (+2 著者) Yoichi Hayakawa
Insect Biochemistry and Molecular Biology 167: 104086 (2024) Semantic Scholar
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3.
N‐acetyloxfenicine strongly induces mitohormesis in mice as well as in insects
Takashi Matsumura; Masaya Ono; Satoshi Osada; Fumikazu Matsuhisa (+1 著者) Yoichi Hayakawa
FEBS Letters (2023) Semantic Scholar
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4.
Stress-derived reactive oxygen species enable hemocytes to release activator of growth blocking peptide (GBP) processing enzyme
Hitoshi Matsumoto; Masanori Ochiai; Erina Imai; Takashi MatsumuraYoichi Hayakawa
Journal of Insect Physiology 131: 104225 (2021) Semantic Scholar
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5.
Abnormal increases in reactive oxygen species in dying insects infected with nematodes
Urara Tonogawa; Takashi Matsumura; Masaya Ono; Toyoshi Yoshiga
Archives of Insect Biochemistry and Physiology 106: (2020) Semantic Scholar
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6.
N-acetyl-l-tyrosine is an intrinsic triggering factor of mitohormesis in stressed animals
Takashi Matsumura, Outa Uryu, Fumikazu Matsuhisa, Keiji Tajiri, Hitoshi Matsumoto, Yoichi Hayakawa
EMBO Reports 21: (2020) Semantic Scholar
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7.
Repeated phenotypic selection for cuticular blackness of armyworm larvae decreased stress resistance
Takashi Matsumura, Hikaru Taya, Hitoshi Matsumoto, Yoichi Hayakawa
Journal of Insect Physiology 117: (2019)
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8.
Identification of a cytokine combination that protects insects from stress
Takashi Matsumura, Fumihiro Nakano, Hitoshi Matsumoto, Outa Uryu, Yoichi Hayakawa
Insect Biochemistry and Molecular Biology 97: (2018) Semantic Scholar
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9.
A gene-driven recovery mechanism: Drosophila larvae increase feeding activity for post-stress weight recovery
Masasuke Ryuda, Miku Tabuchi, Hitoshi Matsumoto, Takashi Matsumura, Masanori Ochiai, Yoichi Hayakawa
Archives of Insect Biochemistry and Physiology 97: (2017) Semantic Scholar
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10.
Heat stress hardening of oriental armyworms is induced by a transient elevation of reactive oxygen species during sublethal stress
Takashi Matsumura, Hitoshi Matsumoto, Yoichi Hayakawa
Archives of Insect Biochemistry and Physiology 96: (2017) Semantic Scholar
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11.
Characterization of venom and oviduct components of parasitoid wasp asobara japonica
Shunsuke Furihata, Takashi Matsumura, Makiko Hirata, Tetsuya Mizutani, Noriyo Nagata, Michiyo Kataoka, Yukie Katayama, Tsutomu Omatsu, Hitoshi Matsumoto, Yoichi Hayakawa
PLoS ONE 11: (2016) Semantic Scholar
書籍等出版物情報はまだありません。
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1.
Stress-induced organismal death is genetically regulated by the mTOR-Zeste-Phae1 axis
Takashi Matsumura; Masasuke Ryuda; Hitoshi Matsumoto; Takumi Kamiyama; Shu Kondo; Yoichi Hayakawa; Ryusuke Niwa
第98回日本生化学会大会 2025年11月5日
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2.
Stress-induced organismal death is genetically programed by the mTOR-Zeste-Phae1 axis
Takashi Matsumura; Masasuke Ryuda; Hitoshi Matsumoto; Takumi Kamiyama; Shu Kondo; Akira Nakamura; Yoichi Hayakawa; Ryusuke Niwa
The 16th Japanese Drosophila Research Conference 2024年9月18日
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3.
A genetic program promotes stress-induced organismal death in the fruit fly Drosophila melanogaster
Takashi Matsumura; Masasuke Ryuda; Hitoshi Matsumoto; Takumi Kamiyama; Shu Kondo; Akira Nakamura; Yoichi Hayakawa; Ryusuke Niwa
XXVII International Congress of Entomology 2024年8月30日
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4.
Stress-induced organismal death is genetically programed by the Zeste-Phae1 axis
The 27th European Drosophila Research Conference 2023年10月
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5.
The Zeste-Phae1 axis is responsible for stress-induced organismal death in the fruit fly Drosophila melanogaster
The 67th Annual Meeting of the Japanese Society of Applied Entomology and Zoology 2023年3月
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6.
The induction of organismal death requires Zeste-mediated transcriptional up-regulation of a stress-responsive protease gene Phaedra1
Japan Drosophila Research Conference 15 2022年9月
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7.
個体死誘導に関わるキイロショウジョウバエ新規ストレス応答性プロテアーゼの同定と機能解析
Takashi Matsumura; Masasuke Ryuda; Hitoshi Matsumoto; Takumi Kamiyama; Shu Kondo; Yoichi Hayakawa; Ryusuke Niwa
日本分子生物学会大会 2021年12月
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8.
Identification and characterization of a novel stress response protease that mediates organismal death induction in Drosophila melanogaster
Japan Drosophila Research Conference 14 2021年9月
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9.
昆虫の個体死誘導に関わる新規ストレス応答性プロテアーゼの解析
松村崇志; 早川洋一
第93回日本生化学会大会 2020年9月
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10.
ストレス応答性プロテアーゼ Phaedra1 の発現機構と生理機能
松村崇志; 早川洋一
第 64 回日本応用動物昆虫学会大会 2020年3月
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11.
昆虫のストレス応答性の解析
松村崇志; 早川洋一
第 89 回日本動物学会大会 2018年9月
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12.
昆虫サイトカイン Stress responsive peptide (SRP)の発現機構と生理機能
松村崇志; 早川洋一
第 62 回日本応用動物昆虫学会大会 2018年3月
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13.
A new bioassay using insects to evaluate stress-resistance induction activity of dietary supplements contents.
The International Congress on Nutrition and Integrative Medicine 2017 2017年7月
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14.
アワヨトウにおけるストレス順応性獲得の分子機構
松村崇志; 早川洋一
第 61 回日本応用動物昆虫学会大会 2017年3月
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15.
昆虫の熱ストレス順応性獲得の分子機構
松村崇志; 早川洋一
日本動物学会・日本植物学会・日本生態学会合同佐賀支部例会(動物学) 2016年11月
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16.
アワヨトウの高温順応性獲得の分子機構
松村崇志; 早川洋一
2016 年度日本応用動物昆虫学会九州支部・九州病害虫研究会共催大会 2016年10月
知財情報はまだありません。
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