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Bioscience, Biotechnology, and Biochemistry|August 11, 2012
Plasminogen activation by lactic acid bacteriaMasaru NomuraFEMS Microbiology Letters|December 12, 2013
Aerobic condition increases carotenoid production associated with oxidative stress tolerance in Enterococcus gilvusTatsuro Hagi, Miho Kobayashi, Masaru NomuraBioscience, Biotechnology, and Biochemistry|November 8, 2007
Manipulation for plasmid elimination by transforming synthetic competitors diversifies lactococcus lactis starters applicable to food productsMiho Kobayashi, Masaru Nomura, Hiromi KimotoLetters in Applied Microbiology|May 21, 2025
Akkermansia muciniphila upregulates the expression of γ-aminobutyric acid in response to deoxycholate exposureTatsuro Hagi, Masaru Nomura, Clara BelzerBioscience, Biotechnology, and Biochemistry|November 23, 2017
Whole-transcriptome analysis of oxidative stress response genes in carotenoid-producing Enterococcus gilvusTatsuro Hagi, Miho Kobayashi, Masaru NomuraApplied and Environmental Microbiology|April 27, 2002
Rapid PCR-based method which can determine both phenotype and genotype of Lactococcus lactis subspeciesMasaru Nomura, Miho Kobayashi, Takashi OkamotoFEMS Microbiology Letters|May 13, 2015
Aerobic conditions increase isoprenoid biosynthesis pathway gene expression levels for carotenoid production in Enterococcus gilvusTatsuro Hagi, Miho Kobayashi, Masaru NomuraBioscience, Biotechnology, and Biochemistry|March 9, 2010
Molecular-based analysis of changes in indigenous milk microflora during the grazing periodTatsuro Hagi, Miho Kobayashi, Masaru NomuraJournal of Dairy Science|December 22, 2015
Metabolome analysis of milk fermented by γ-aminobutyric acid-producing Lactococcus lactisTatsuro Hagi, Miho Kobayashi, Masaru NomuraFolia Microbiologica|March 28, 2013
Adhesive properties of predominant bacteria in raw cow's milk to bovine mammary gland epithelial cellsTatsuro Hagi, Keisuke Sasaki, Hisashi Aso, et al.Pageof 5