山口大学 中高温微生物研究センター

研究業績 [ 発酵微生物部門 ] 2018年度

研究論文

  • Kosaka T, Goda M, Inoue M, Yakushi T, Yamada M. Flagellum-mediated motility in Pelotomaculum thermopropionicum SI. Biosci. Biotechnol. Biochem. 83(7):1362-1371. doi: 10.1080/09168451.2019.1597618 (2019)
  • Talukder AA, Adnan N, Siddiqa A, Miah R, Tuli JF, Khan ST, Dey SK, Lertwattanasakul N, Yamada M: Fuel Ethanol Production Using Xylose Assimilating and High Ethanol Producing Thermosensitive Saccharomyces cerevisiae Isolated from Date Palm Juice in Bangladesh, Biocatal. Agri. Biotechnol. doi: 10.1016/j.bcab.2019.101029 (2019)
  • Pattanakittivorakul S, Lertwattanasakul N, Yamada M, Limtong S. Selection of thermotolerant Saccharomyces cerevisiae for high temperature ethanol production from molasses and increasing ethanol production by strain improvement. Antonie van Leeuwenhoek 112(7):975-990. Doi: 10.1007/s10482-019-01230-6 (2019)
  • Samappito J, Yamada M, Klanrit P, Thanonkeo P. Characterization of a thermo-adapted strain of Zymomonas mobilis for ethanol production at high temperature. 3 Biotech., 8(11):474. Doi: org/10.1007/s13205-018-1493-7 (2018)
  • Nurcholis M, Nitiyon S, Suprayogi, Rodrussamee N, Lertwattanasakul N, Limtong S, Kosaka T, Yamada M. Functional analysis of Mig1 and Rag5 as expressional regulators in thermotolerant yeast Kluyveromyces marxianus. Appl. Microbiol. Biotechnol., 103(1):395-410.DOI:10.1007/s00253-018-9462-y (2018)  
  • Rodrussamee N, Sattayawat P, Yamada M. Highly efficient conversion of xylose to ethanol without glucose repression by newly isolated thermotolerant Spathaspora passalidarum CMUWF1-2. BMC Microbiol. 18:73. DOI: 10.1186/s12866-018-1218-4 (2018)
  • Yakushi T, Terada Y, Ozaki S, Kataoka N, Akakabe Y, Adachi O, Matsutani M, Matsushita K. Aldopentoses as new substrates for the membrane-bound, pyrroloquinoline quinone-dependent glycerol (polyol) dehydrogenase of Gluconobacter sp. Appl. Microbiol. Biotechnol. 102(7):3159-3171 (2018) 2018 Apr; doi: 10.1007/s00253-018-8848-1.
  • Matsumoto N, Hattori H, Matsutani M, Matayoshi C, Toyama H, Kataoka N, Yakushi T, Matsushita K. A single-nucleotide insertion in a drug transporter gene induces a thermotolerant phenotype of Gluconobacter frateurii by increasing the NADPH/ NADP+ ratio via metabolic change. Appl. Environ. Microbiol. 84 (10) e00354-18 (2018) doi: 10.1128/AEM.00354-18.
  • Yakushi T, Fukunari S, Kodama T, Matsutani M, Nina S, Kataoka N, Theeragool G, and Matsushita K. Role of a membrane-bound aldehyde dehydrogenase complex AldFGH in acetic acid fermentation with Acetobacter pasteurianus SKU1108. Appl. Microbiol. Biotechnol. 102(10) 4549-4561 (2018) 2018, doi: 10.1007/s00253-018-8940-6.
  • Naloka K. Yukphan P, Matsushita K, Theeragool G, Molecular taxonomy and characterization of thermotolerant Komagataeibacter species for bacterial nanocellulose production at high temperatures. Chiang Mai Journal of Science 45 (4) 1610-1622 (2018)
  • Theeragool, G., Pitiwittayakul, N., Matsutani, M., Matsushita, K, Disruption of the groEL gene revealed a physiological role for chaperonin in the thermotolerant acetic acid bacterium, Acetobacter pasteurianus SKU1108. Chiang Mai Journal of Science 45 (4), 1623-1633 (2018)
  • Kataoka N, Vangnai AS, Pongtharangkul T, Yakushi T, Wada M, Yokota A, Matsushita K, Engineering of Corynebacterium glutamicum as a prototrophic pyruvate-producing strain: Characterization of a ramA-deficient mutant and its application for metabolic engineering. Biosci. Biotechnol. Biochem. 83(2):372-380 (2019) 2019 Feb; doi: 10.1080/09168451.2018.1527211.
  • Matsutani M, Hirakawa H, Sriherfyna FH, Kataoka N, Yakushi T, Matsushita K, Diversity of NADH dehydrogenase in acetic acid bacteria; adaptation to modify their phenotype through gene expansion, losses and neo functionalization. Microbiology 165(3) 287-291(2019) 2019 Mar.
  • Misumi Y, Nishioka S, Fukuda A, Uemura T, Nakamur, M, Hoshida H, Akada R, YHp as a highly stable, hyper-copy, hyper-expression plasmid constructed using a full 2-μm circle sequence in cir0 strains of Saccharomyces cerevisiaeYeast, 36:249-257, 2019, doi: 10.1002/yea.3371.
  • Fujisawa K, Takami T, Nagatomo T, Fukui Y, Hoshida H, Saeki I, Matsumoto T, Hidaka I, Yamamoto N, Sakaida I, Usefulness of adult medaka fish as a model for the evaluation of alcoholic fatty liver, Alcohol, 77:147-154, 2019, doi: 10.1016/j.alcohol.2019.01.005.
  • Nakamura M, Aihara J, Hoshida H, Akada R, Identification and Mutational Analysis of Escherichia coli Sorbitol-Enhanced Glucose-Repressed srlA Promoter Expressed in LB Medium by Using Homologous Recombination and One-Round PCR Products, Mol. Biotechnol., 60:912-923, 2018, doi: 10.1007/s12033-018-0123-2.

著書

  • Kosaka T, Lertwattanasakul N, Rodrussamee N, Nurcholis M, Dung NTP, Keo-Oudone C, Murata M, Götz P, Theodoropoulos C, Suprayogi, Maligan JM, Limtong S, Yamada M. Potential of thermotolerant ethanologenic yeasts isolated from ASEAN countries and their application in high-temperature fermentation. In Fuel Ethanol Production from Sugarcane. Thalita Peixoto Basso and Luiz Carlos Basso (eds) ISBN: 978-1-78984-937-0 (print) 978-1-78984-937-7 (online) IntechOpen, pp121-154 (2019)
  • 赤田倫治,中村美紀子,星田尚司,「耐熱性酵母Kluyveromyces marxianusを用いた物質生産と育種技術」,pp. 24-32,酵母菌・麹菌・乳酸菌の産業応用展開,シーエムシー出版,2018年
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