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Applied Microbiology and Biotechnology|October 13, 2009
High-temperature fermentation: how can processes for ethanol production at high temperatures become superior to the traditional process using mesophilic yeast?Babiker M A Abdel-Banat, Hisashi Hoshida, Akihiko Ano, et al.Journal of Bioscience and Bioengineering|July 2, 2025
Nutrient factors specifically promoting ethanol fermentation but not growth in yeastSatoshi Ebe, Yukie Misumi, Yuki Terauchi, et al.Journal of Biotechnology|December 21, 2010
Identification of genes that enhance cellulase protein production in yeastTakao Kitagawa, Katsunori Kohda, Kenro Tokuhiro, et al.Molecular Biotechnology|May 23, 2015
A Novel Terminator Primer and Enhancer Reagents for Direct Expression of PCR-Amplified Genes in Mammalian CellsMikiko Nakamura, Ayako Suzuki, Junko Akada, et al.Bioscience, Biotechnology, and Biochemistry|November 14, 2015
Genomic analyses of thermotolerant microorganisms used for high-temperature fermentationsKazunobu Matsushita, Yoshinao Azuma, Tomoyuki Kosaka, et al.Bioscience, Biotechnology, and Biochemistry|January 28, 2004
Self-cloning yeast strains containing novel FAS2 mutations produce a higher amount of ethyl caproate in Japanese sakeKazuo Aritomi, Isao Hirosawa, Hisashi Hoshida, et al.Yeast (Chichester, England)|December 12, 2018
YHp as a highly stable, hyper-copy, hyper-expression plasmid constructed using a full 2-μm circle sequence in cir0 strains of Saccharomyces cerevisiaeYukie Misumi, Satoko Nishioka, Akira Fukuda, et al.Applied Microbiology and Biotechnology|July 1, 2005
Direct mating between diploid sake strains of Saccharomyces cerevisiaeShinji Hashimoto, Kazuo Aritomi, Takafumi Minohara, et al.Bioscience, Biotechnology, and Biochemistry|May 8, 2009
Construction of flocculent Kluyveromyces marxianus strains suitable for high-temperature ethanol fermentationSanom Nonklang, Akihiko Ano, Babiker M A Abdel-Banat, et al.Journal of Bioscience and Bioengineering|September 21, 2025
Identification and engineering of a cellobiose transporter KmStl1p to enhance cellobiose utilization in Kluyveromyces marxianus and Saccharomyces cerevisiaeSatoshi Ebe, Takuya Abe, Shogo Motozono, et al.Pageof 6