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Journal Abstract Search


133 related items for PubMed ID: 29660854

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  • 2. Engineering Clostridium beijerinckii with the Cbei_4693 gene knockout for enhanced ferulic acid tolerance.
    Liu J, Guo T, Shen X, Xu J, Wang J, Wang Y, Liu D, Niu H, Liang L, Ying H.
    J Biotechnol; 2016 Jul 10; 229():53-7. PubMed ID: 27164255
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  • 5. Metabolic network reconstruction and genome-scale model of butanol-producing strain Clostridium beijerinckii NCIMB 8052.
    Milne CB, Eddy JA, Raju R, Ardekani S, Kim PJ, Senger RS, Jin YS, Blaschek HP, Price ND.
    BMC Syst Biol; 2011 Aug 16; 5():130. PubMed ID: 21846360
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  • 6. Transcriptional analysis of Clostridium beijerinckii NCIMB 8052 and the hyper-butanol-producing mutant BA101 during the shift from acidogenesis to solventogenesis.
    Shi Z, Blaschek HP.
    Appl Environ Microbiol; 2008 Dec 16; 74(24):7709-14. PubMed ID: 18849451
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  • 9. Comparative phenotypic analysis and genome sequence of Clostridium beijerinckii SA-1, an offspring of NCIMB 8052.
    Sandoval-Espinola WJ, Makwana ST, Chinn MS, Thon MR, Azcárate-Peril MA, Bruno-Bárcena JM.
    Microbiology (Reading); 2013 Dec 16; 159(Pt 12):2558-2570. PubMed ID: 24068240
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  • 13. Transcription profiling of butanol producer Clostridium beijerinckii NRRL B-598 using RNA-Seq.
    Sedlar K, Koscova P, Vasylkivska M, Branska B, Kolek J, Kupkova K, Patakova P, Provaznik I.
    BMC Genomics; 2018 May 30; 19(1):415. PubMed ID: 29843608
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  • 20. Interactions between Bacillus cereus CGMCC 1.895 and Clostridium beijerinckii NCIMB 8052 in coculture for butanol production under nonanaerobic conditions.
    Mai S, Wang G, Wu P, Gu C, Liu H, Zhang J, Wang G.
    Biotechnol Appl Biochem; 2017 Sep 30; 64(5):719-726. PubMed ID: 27306691
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