{"id":838,"date":"2022-07-13T12:50:10","date_gmt":"2022-07-13T03:50:10","guid":{"rendered":"https:\/\/urase-lab.bs.teu.ac.jp\/?page_id=838"},"modified":"2026-01-14T19:48:51","modified_gmt":"2026-01-14T10:48:51","slug":"%e7%a0%94%e7%a9%b6%e6%a5%ad%e7%b8%be%e5%be%8c%e8%97%a4-%e6%97%a9%e5%b8%8c","status":"publish","type":"page","link":"https:\/\/urase-lab.bs.teu.ac.jp\/?page_id=838","title":{"rendered":"\u7814\u7a76\u696d\u7e3e(\u5f8c\u85e4 \u65e9\u5e0c)"},"content":{"rendered":"\n<h2 class=\"wp-block-heading\"><strong>\u7814\u7a76\u8ad6\u6587(\u67fb\u8aad\u4ed8\u304d, \u5f8c\u85e4 \u65e9\u5e0c)<\/strong><\/h2>\n\n\n\n<p>(1) Hokamura A, Yunoue Y, Goto S, Matsusaki H (2017). Biosynthesis of polyhydroxyalkanoate from steamed soybean wastewater by a recombinant strain of <em>Pseudomonas<\/em> sp. 61-3, <em>Bioengineering<\/em>, 4, 10 pages.<\/p>\n\n\n\n<p>(2) Tanaka K, Sakai K, Goto S, Matsusaki H (2017). Effect of adding fatty acid in culture medium on cell growth of acid tolerant lactic acid bacterium, <em>International Journal of Science and Engineering Investigations<\/em>, 6, 78\u301c81.<\/p>\n\n\n\n<p>(3) Goto S, Motomura A, Kawahara A, Shiratsuchi H, Tanaka K, Matsusaki H (2018). Cloning and heterologous expression of the lactate dehydrogenase genes from acid-tolerant <em>Lactobacillus acetotolerans<\/em> HT, <em>Food Science and Technology Research<\/em>, 24, 861\u301c868.<\/p>\n\n\n\n<p>(4) Goto S, Hokamura A, Shiratsuchi H, Taguchi S, Matsumoto K, Abe H, Tanaka K, Matsusaki H (2019). Biosynthesis of novel lactate-based polymers containing medium-chain-length 3-hydroxyalkanoates by recombinant <em>Escherichia coli<\/em> strains from glucose, <em>Journal of Bioscience and Bioengineering<\/em>, 128, 191\u301c197.<\/p>\n\n\n\n<p>(5) Goto S, Suzuki N, Matsumoto K, Taguchi S, Tanaka K, Matsusaki H (2019). Enhancement of lactate fraction in poly(lactate-<em>co<\/em>-3-hydroxybutyrate) synthesized by <em>Escherichia coli<\/em> harboring the D-lactate dehydrogenase gene from <em>Lactobacillus acetotolerans<\/em> HT, <em>The Journal of General and Applied Microbiology<\/em>, 65, 204\u301c208.<\/p>\n\n\n\n<p>(6) Hiroe A, Sakurai T, Mizuno S, Miyahara Y, Goto S, Yamada M, Tsuge T, Taguchi S\uff082021\uff09.&nbsp; Microbial oversecretion of (<em>R<\/em>)-3-hydroxybutyrate oligomer with diethylene glycol terminal as a macromonomer for polyurethane synthesis. <em>International Journal of Biological Macromolecules<\/em>, 167, 1290\u301c1296.<\/p>\n\n\n\n<p>(7) Goto S, Miyahara Y, Taguchi S, Tsuge T, Hiroe A (2022). Enhanced production of (<em>R<\/em>)-3-hydroxybutyrate oligomers by coexpression of molecular chaperones in recombinant<em> Escherichia coli<\/em> harboring a polyhydroxyalkanoate synthase derived from <em>Bacillus cereus <\/em>YB-4. <em>Microorganisms<\/em>, 10 , 458.<\/p>\n\n\n\n<p>(8) Urase T, Goto S, Sato M (2022). Monitoring Carbapenem-Resistant Enterobacterales in the Environment to Assess the Spread in the Community. Antibiotics. 11(7):917. (<a href=\"https:\/\/doi.org\/10.3390\/antibiotics11070917\">DOI<\/a>)<\/p>\n\n\n\n<p>(9) Urase T, Yang X, Goto S. (2023): Occurrence of <em>Stenotrophomonas<\/em> spp. in the Water Environment and Characteristics of Isolates,&nbsp;<em>Journal of Water and Environment Technology<\/em>, 21(4), 213-223. (<a href=\"https:\/\/doi.org\/10.2965\/jwet.22-153\" title=\"\">DOI<\/a>)<\/p>\n\n\n\n<p>(10) Goto S, Urase T, Nakakura K. (2023): Novel and Simple Method for Quantification of 2,4,6-Trichlorophenol with Microbial Conversion to 2,4,6-Trichloroanisole, <em>Microorganisms<\/em>, 11(9), 2133. (<a href=\"https:\/\/doi.org\/10.3390\/microorganisms11092133\" title=\"\">DOI<\/a>)<\/p>\n\n\n\n<p>(11) Nakanishi A, Omino N, Nakamura T, Goto S, Matsumoto R, Yomogita M, Narisawa N, Kimijima M, Iritani K (2024): Evaluation of Cellular Responses of Heterotrophic<em> Escherichia coli<\/em> Cultured with Autotrophic <em>Chlamydomonas reinhardtii<\/em> as a Nutrient Source by Analyses Based on Microbiology and Transcriptome, <em>Microorganisms<\/em>, 12(3), 452. (<a href=\"https:\/\/doi.org\/10.3390\/microorganisms12030452\" title=\"DOI\">DOI<\/a>)<\/p>\n\n\n\n<p>(12) Zhou S, Urase T, Goto S. (2024): Constituents of Coliform Species Contained in the Permeate of Microfiltration Membranes in Wastewater Treatment, <em>Water<\/em>, 16(9), 1269. (<a href=\"https:\/\/doi.org\/10.3390\/w16091269\" title=\"\">DOI<\/a>)<\/p>\n\n\n\n<p>(13) Zhou S, Goto S, Urase T. (2025): Presence of unculturable bacteria in the permeate of microfiltration membranes with various pore-sizes in wastewater treatment, <em>Journal of Water Process Engineering<\/em> (IF=6.7), 76, 108182, (<a href=\"https:\/\/doi.org\/10.1016\/j.jwpe.2025.108182\" title=\"\">DOI<\/a>)<\/p>\n\n\n\n<p>(14) Urase T, Goto S. (2025): A case study on factors influencing <em>Escherichia coli<\/em> concentrations in an urban river draining a fully sewered area, <em>Water<\/em> 17(20), 3026. (<a href=\"https:\/\/doi.org\/10.3390\/w17203026\" title=\"\">DOI<\/a>)<\/p>\n\n\n\n<h2 class=\"wp-block-heading\"><strong>\u5b66\u4f1a\u767a\u8868(\u7b46\u982d, \u5f8c\u85e4 \u65e9\u5e0c)<\/strong><\/h2>\n\n\n\n<p>(1)<em> Lactobacillus acetotolerans<\/em> HT\u306e\u4e73\u9178\u8131\u6c34\u7d20\u9175\u7d20\u907a\u4f1d\u5b50\u306e\u30af\u30ed\u30fc\u30cb\u30f3\u30b0\u3068\u4e73\u9178\u30e6\u30cb\u30c3\u30c8\u3092\u542b\u3080\u751f\u5206\u89e3\u6027\u30d7\u30e9\u30b9\u30c1\u30c3\u30af\u306e\u751f\u5408\u6210\u300d, \u7b2c20\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u4e5d\u5dde\u652f\u90e8\u4f50\u8cc0\u5927\u4f1a, \u4f50\u8cc0\uff082013.12\uff09<\/p>\n\n\n\n<p>(2) <em>Lactobacillus acetotolerans<\/em> HT\u306e\u4e73\u9178\u8131\u6c34\u7d20\u9175\u7d20\u907a\u4f1d\u5b50\u3092\u5229\u7528\u3057\u305f\u4e73\u9178\u30e6\u30cb\u30c3\u30c8\u3092\u542b\u3080\u751f\u5206\u89e3\u6027\u30d7\u30e9\u30b9\u30c1\u30c3\u30af\u306e\u751f\u5408\u6210, \u7b2c66\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u5927\u4f1a, \u672d\u5e4c\uff082014.9\uff09<\/p>\n\n\n\n<p>(3) \u4e73\u9178\u30e6\u30cb\u30c3\u30c8\u3092\u542b\u3080\u751f\u5206\u89e3\u6027\u5171\u91cd\u5408\u30dd\u30ea\u30a8\u30b9\u30c6\u30eb\u306e\u751f\u5408\u6210, \u7b2c21\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u4e5d\u5dde\u652f\u90e8\u718a\u672c\u5927\u4f1a, \u718a\u672c\uff082014.12\uff09<\/p>\n\n\n\n<p>(4) \u8010\u9178\u6027\u4e73\u9178\u83cc<em>Lactobacillus acetotolerans<\/em> HT\u306e\u4e73\u9178\u8131\u6c34\u7d20\u9175\u7d20\u907a\u4f1d\u5b50\u306e\u30af\u30ed\u30fc\u30cb\u30f3\u30b0\u3068\u751f\u5206\u89e3\u6027\u5171\u91cd\u5408\u30dd\u30ea\u30a8\u30b9\u30c6\u30eb\u306e\u751f\u5408\u6210, \u65e5\u672c\u8fb2\u82b8\u5316\u5b66\u4f1a2015\u5e74\u5ea6\u5927\u4f1a, \u5ca1\u5c71\uff082015.3\uff09<\/p>\n\n\n\n<p>(5) \u4e73\u9178\u30e6\u30cb\u30c3\u30c8\u3092\u542b\u3080\u65b0\u898f\u30e2\u30ce\u30de\u30fc\u7d44\u6210\u304b\u3089\u306a\u308b\u751f\u5206\u89e3\u5171\u91cd\u5408\u30dd\u30ea\u30a8\u30b9\u30c6\u30eb\u306e\u751f\u5408\u6210, \u7b2c67\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u5927\u4f1a, \u9e7f\u5150\u5cf6\uff082015.10\uff09<\/p>\n\n\n\n<p>(6) \u7d44\u63db\u3048\u5927\u8178\u83cc\u306b\u3088\u308b\u4e73\u9178\u30e6\u30cb\u30c3\u30c8\u3092\u542b\u3080\u65b0\u898f\u30e2\u30ce\u30de\u30fc\u7d44\u6210\u304b\u3089\u306a\u308b\u751f\u5206\u89e3\u5171\u91cd\u5408\u30dd\u30ea\u30a8\u30b9\u30c6\u30eb\u306e\u751f\u5408\u6210, \u65e5\u672c\u8fb2\u82b8\u5316\u5b66\u4f1a2016\u5e74\u5ea6\u5927\u4f1a, \u672d\u5e4c\uff082016.3\uff09<\/p>\n\n\n\n<p>(7) \u4e73\u9178\u30e6\u30cb\u30c3\u30c8\u3092\u542b\u3080\u65b0\u898f\u30e2\u30ce\u30de\u30fc\u7d44\u6210\u304b\u3089\u306a\u308b\u751f\u5206\u89e3\u6027\u30d7\u30e9\u30b9\u30c1\u30c3\u30af\u306e\u751f\u5408\u6210, \u7b2c53\u56de\u5316\u5b66\u95a2\u9023\u652f\u90e8\u5408\u540c\u4e5d\u5dde\u5927\u4f1a, \u5317\u4e5d\u5dde\uff082016.7\uff09<\/p>\n\n\n\n<p>(8) <em>Lactobacillus acetotolerans<\/em> HT\u306e\u4e73\u9178\u8131\u6c34\u7d20\u9175\u7d20\u907a\u4f1d\u5b50\u306e\u30af\u30ed\u30fc\u30cb\u30f3\u30b0\u3068\u65b0\u898f\u4e73\u9178\u30d9\u30fc\u30b9\u30dd\u30ea\u30de\u30fc\u306e\u751f\u5408\u6210, \u7b2c23\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u4e5d\u5dde\u652f\u90e8\u98ef\u585a\u5927\u4f1a, \u98ef\u585a\uff082016.12\uff09<\/p>\n\n\n\n<p>(9) \u7d44\u63db\u3048\u5927\u8178\u83cc\u306b\u3088\u308b\u65b0\u898f\u4e73\u9178\u30d9\u30fc\u30b9\u30dd\u30ea\u30de\u30fc\u306e\u751f\u5408\u6210, \u65e5\u672c\u8fb2\u82b8\u5316\u5b66\u4f1a2017\u5e74\u5ea6\u5927\u4f1a, \u4eac\u90fd\uff082017.3\uff09<\/p>\n\n\n\n<p>(10) \u65b0\u898f\u306e\u751f\u5206\u89e3\u6027\u4e73\u9178\u30d9\u30fc\u30b9\u30dd\u30ea\u30de\u30fc\u306e\u751f\u5408\u6210, \u7b2c54\u56de\u5316\u5b66\u95a2\u9023\u652f\u90e8\u5408\u540c\u4e5d\u5dde\u5927\u4f1a, \u5317\u4e5d\u5dde\uff082017.7\uff09<\/p>\n\n\n\n<p>(11) \u7d44\u63db\u3048\u5927\u8178\u83cc\u306b\u3088\u308b\u65b0\u898f\u30e2\u30ce\u30de\u30fc\u7d44\u6210\u304b\u3089\u306a\u308b\u4e73\u9178\u30d9\u30fc\u30b9\u30dd\u30ea\u30de\u30fc\u306e\u751f\u5408\u6210, \u7b2c69\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u5927\u4f1a, \u6771\u4eac\uff082017.9\uff09<\/p>\n\n\n\n<p>(12) \u7cd6\u3092\u70ad\u7d20\u6e90\u3068\u3057\u305f\u65b0\u898f\u306e\u4e73\u9178\u30d9\u30fc\u30b9\u30dd\u30ea\u30de\u30fc\u306e\u5fae\u751f\u7269\u5408\u6210, \u7b2c24\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u4e5d\u5dde\u652f\u90e8\u6c96\u7e04\u5927\u4f1a, \u6c96\u7e04\uff082017.12\uff09<\/p>\n\n\n\n<p>(13) \u900f\u660e\u6027\u3092\u6709\u3059\u308b\u65b0\u898f\u4e73\u9178\u30d9\u30fc\u30b9\u30dd\u30ea\u30de\u30fc\u306e\u751f\u5408\u6210, \u65e5\u672c\u8fb2\u82b8\u5316\u5b66\u4f1a2018\u5e74\u5ea6\u5927\u4f1a, \u540d\u53e4\u5c4b\uff082018.3\uff09<\/p>\n\n\n\n<p>(14) Biosynthesis of biodegradable lactate-based polymers with novel monomer compositions from glucose as the sole carbon source, The 12th SPSJ International Polymer Conference, Hiroshima (Japan)\uff082018.12\uff09<\/p>\n\n\n\n<p>(15) \u65b0\u898f\u4e73\u9178\u30d9\u30fc\u30b9\u30dd\u30ea\u30de\u30fc\u306e\u5fae\u751f\u7269\u5408\u6210, \u7b2c8\u56de JACI\/GSC\u30b7\u30f3\u30dd\u30b8\u30a6\u30e0\uff08Japan Association for Chemical Innovation \/ Green and Sustainable Chemistry\uff09, \u6771\u4eac\uff082019.6\uff09<\/p>\n\n\n\n<p>(16) \u30dd\u30ea\u30a8\u30b9\u30c6\u30eb\u91cd\u5408\u9175\u7d20\u306e\u767a\u73fe\u3092\u5411\u4e0a\u3055\u305b\u305f\u7d44\u63db\u3048\u5927\u8178\u83cc\u306b\u3088\u308b3-\u30d2\u30c9\u30ed\u30ad\u30b7\u30d6\u30bf\u30f3\u9178\u30aa\u30ea\u30b4\u30de\u30fc\u306e\u5206\u6ccc\u751f\u7523, 19-3\u30a8\u30b3\u30de\u30c6\u30ea\u30a2\u30eb\u30b7\u30f3\u30dd\u30b8\u30a6\u30e0, \u6771\u4eac\uff082020.3\uff09, \u958b\u50ac\u4e2d\u6b62\u3001\u8981\u65e8\u767a\u884c\u306b\u3088\u308a\u767a\u8868\u6210\u7acb<\/p>\n\n\n\n<p>(17) <em>Bacillus cereus<\/em> YB-4 \u7531\u6765\u30dd\u30ea\u30a8\u30b9\u30c6\u30eb\u91cd\u5408\u9175\u7d20\u3092\u767a\u73fe\u3055\u305b\u305f\u7d44\u63db\u3048\u5927\u8178\u83cc\u306b\u3088\u308b 3-\u30d2\u30c9\u30ed\u30ad\u30b7\u30d6\u30bf\u30f3\u9178\u30aa\u30ea\u30b4\u30de\u30fc\u306e\u5206\u6ccc\u751f\u7523, \u65e5\u672c\u8fb2\u82b8\u5316\u5b66\u4f1a 2020\u5e74\u5ea6\u5927\u4f1a, \u798f\u5ca1, \uff082020.3\uff09, \u958b\u50ac\u4e2d\u6b62\u3001\u8981\u65e8\u767a\u884c\u306b\u3088\u308a\u767a\u8868\u6210\u7acb<\/p>\n\n\n\n<p>(18) <em>Bacillus cereus <\/em>YB-4\u7531\u6765\u30dd\u30ea\u30a8\u30b9\u30c6\u30eb\u91cd\u5408\u9175\u7d20\u3068\u5206\u5b50\u30b7\u30e3\u30da\u30ed\u30f3\u3092\u5171\u767a\u73fe\u3055\u305b\u305f\u7d44\u63db\u3048\u5927\u8178\u83cc\u306b\u3088\u308b3-\u30d2\u30c9\u30ed\u30ad\u30b7\u30d6\u30bf\u30f3\u9178\u30aa\u30ea\u30b4\u30de\u30fc\u306e\u5206\u6ccc\u751f\u7523, \u65e5\u672c\u8fb2\u82b8\u5316\u5b66\u4f1a 2021\u5e74\u5ea6\u5927\u4f1a, \u4ed9\u53f0\uff08\u30aa\u30f3\u30e9\u30a4\u30f3\u958b\u50ac\uff09\uff082021.3\uff09<\/p>\n\n\n\n<p>(19) Production of 3-hydroxybutyrate oligomer in recombinant <em>Escherichia coli<\/em> by co-expression of polyhydroxyalkanoate synthase and molecular chaperones, The 2021 International Chemical Congress of Pacific Basin Societies (Pacifichem 2021), Honolulu (virtual)\uff082021.12\uff09<\/p>\n\n\n\n<p>(20) Investigation on the biodegradation potential of medium-chain-length polyhydroxyalkanoate homopolymers, The 5th International Union of Materials Research Societies, International Conference of Young Researchers on Advanced Materials (IUMRS-ICYRAM 2022), Fukuoka (virtual)\uff082022.8\uff09<\/p>\n\n\n\n<p>(21)\u81ed\u6c17\u6027\u30cf\u30ed\u30b2\u30f3\u5316\u30d5\u30a7\u30ce\u30fc\u30eb\u306e\u751f\u7269\u5b66\u7684\u624b\u6cd5\u3092\u7528\u3044\u305f\u9ad8\u611f\u5ea6\u5b9a\u91cf\u6cd5\u306e\u958b\u767a, \u7b2c75\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u5927\u4f1a, \u540d\u53e4\u5c4b\uff082023.9\uff09<\/p>\n\n\n\n<p>(22) \u5ec3\u68c4\u7269\u7cfb\u30d0\u30a4\u30aa\u30de\u30b9\u3092\u539f\u6599\u3068\u3057\u305f\u30d0\u30a4\u30aa\u30d7\u30e9\u30b9\u30c1\u30c3\u30af\u751f\u7523\u83cc\u306e\u5358\u96e2, \u7b2c58\u56de\u65e5\u672c\u6c34\u74b0\u5883\u5b66\u4f1a\u5e74\u4f1a, \u798f\u5ca1\uff082024.3\uff09<\/p>\n\n\n\n<p>(23) \u751f\u5206\u89e3\u6027\u30d7\u30e9\u30b9\u30c1\u30c3\u30af\u5206\u89e3\u306b\u3088\u308b\u571f\u58cc\u5fae\u751f\u7269\u7fa4\u96c6\u69cb\u9020\u3078\u306e\u5f71\u97ff\uff0c\u7b2c59\u56de\u6c34\u74b0\u5883\u5b66\u4f1a\u5e74\u4f1a, 59, pp661, P-J-03 (\u672d\u5e4c\uff0c2025\u5e743\u670817\u65e5\u767a\u8868)<\/p>\n\n\n\n<p>(24) \u30dd\u30ea\u30d2\u30c9\u30ed\u30ad\u30b7\u30a2\u30eb\u30ab\u30f3\u9178\u306e\u751f\u5206\u89e3\u304c\u571f\u58cc\u5316\u5b66\u7279\u6027\u306b\u4e0e\u3048\u308b\u5f71\u97ff, \u7b2c77\u56de\u65e5\u672c\u751f\u7269\u5de5\u5b66\u4f1a\u5927\u4f1a, 3Kp01\uff08pp304\uff09(\u5e83\u5cf6, 2025\u5e749 \u670812\u65e5\u767a\u8868)<\/p>\n\n\n\n<p><\/p>\n","protected":false},"excerpt":{"rendered":"<p>\u7814\u7a76\u8ad6\u6587(\u67fb\u8aad\u4ed8\u304d, \u5f8c\u85e4 \u65e9\u5e0c) (1) Hokamura A, Yunoue Y, Goto S, Matsusaki H (2017). 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