Saccharomycetes

Results: 136



#Item
41Deciphering the Hybridisation History Leading to the Lager Lineage Based on the Mosaic Genomes of Saccharomyces bayanus Strains NBRC1948 and CBS380T Huu-Vang Nguyen1,2*, Jean-Luc Legras3, Ce´cile Neuve´glise1,2, Claude

Deciphering the Hybridisation History Leading to the Lager Lineage Based on the Mosaic Genomes of Saccharomyces bayanus Strains NBRC1948 and CBS380T Huu-Vang Nguyen1,2*, Jean-Luc Legras3, Ce´cile Neuve´glise1,2, Claude

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Source URL: www.ncbi.nlm.nih.gov

Language: English
42Supplemental Material can be found at: http://www.jbc.org/content/suppl[removed]M110[removed]DC1.html THE JOURNAL OF BIOLOGICAL CHEMISTRY VOL. 286, NO. 13, pp[removed]–11414, April 1, 2011 © 2011 by The American Socie

Supplemental Material can be found at: http://www.jbc.org/content/suppl[removed]M110[removed]DC1.html THE JOURNAL OF BIOLOGICAL CHEMISTRY VOL. 286, NO. 13, pp[removed]–11414, April 1, 2011 © 2011 by The American Socie

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Source URL: cms.unige.ch

Language: English - Date: 2011-11-29 06:17:26
43Jure Piškur (1960 – 2014) Honorary Chairman and Inspirer of the ISSY31 Jure Piškur was born in Slovenia, in the ducal town of Celje. He studied biology and chemistry at the two different faculties at the University o

Jure Piškur (1960 – 2014) Honorary Chairman and Inspirer of the ISSY31 Jure Piškur was born in Slovenia, in the ducal town of Celje. He studied biology and chemistry at the two different faculties at the University o

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Source URL: www.issy31.com

Language: English - Date: 2014-10-06 09:30:22
44Ethanol production from paper sludge by simultaneous saccharification and cofermentation using recombinant xylosefermenting microorganisms

Ethanol production from paper sludge by simultaneous saccharification and cofermentation using recombinant xylosefermenting microorganisms

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Source URL: bioenergycenter.org

Language: English - Date: 2011-02-11 10:55:08
45Engineered Saccharomyces cerevisiae capable of simultaneous cellobiose and xylose fermentation Suk-Jin Haa,b,1, Jonathan M. Galazkac,1, Soo Rin Kima,b, Jin-Ho Choia,b, Xiaomin Yangd, Jin-Ho Seoe, N. Louise Glassf, Jamie

Engineered Saccharomyces cerevisiae capable of simultaneous cellobiose and xylose fermentation Suk-Jin Haa,b,1, Jonathan M. Galazkac,1, Soo Rin Kima,b, Jin-Ho Choia,b, Xiaomin Yangd, Jin-Ho Seoe, N. Louise Glassf, Jamie

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Source URL: openwetware.org

Language: English - Date: 2010-12-29 16:26:18
46Presented	
  by	
  Jessica	
  and	
  Natalie	
   Feb	
  27th,	
  2013	
   20.385	
   PLoS One 7(3):e33279 (March[removed]doi:[removed]journal.pone[removed]  Recent applications of Synthetic

Presented  by  Jessica  and  Natalie   Feb  27th,  2013   20.385   PLoS One 7(3):e33279 (March[removed]doi:[removed]journal.pone[removed] Recent applications of Synthetic

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Source URL: openwetware.org

Language: English - Date: 2013-02-28 16:48:48
47Genome Sequences of Industrially Relevant Saccharomyces cerevisiae Strain M3707, Isolated from a Sample of Distillers Yeast and Four Haploid Derivatives Steven D. Brown,a,b Dawn M. Klingeman,a,b Courtney M. Johnson,a,b A

Genome Sequences of Industrially Relevant Saccharomyces cerevisiae Strain M3707, Isolated from a Sample of Distillers Yeast and Four Haploid Derivatives Steven D. Brown,a,b Dawn M. Klingeman,a,b Courtney M. Johnson,a,b A

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Source URL: bioenergycenter.org

Language: English - Date: 2013-06-11 09:09:37
48Microsoft Word - Candida_Special_Report[4].doc

Microsoft Word - Candida_Special_Report[4].doc

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Source URL: mercola.fileburst.com

Language: English - Date: 2010-10-04 23:22:46
49Supporting Information Ha et al[removed]pnas[removed]SI Text SI Analysis. Improved ethanol yield of cofermentation when compared to single sugar fermentations (cellobiose or xylose). First, the mass

Supporting Information Ha et al[removed]pnas[removed]SI Text SI Analysis. Improved ethanol yield of cofermentation when compared to single sugar fermentations (cellobiose or xylose). First, the mass

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Source URL: openwetware.org

Language: English - Date: 2010-12-29 16:27:37
50Molecular Biology of the Cell Vol. 18, 5100 –5112, December 2007 Acclimation of Saccharomyces cerevisiae to Low D Temperature: A Chemostat-based Transcriptome Analysis□

Molecular Biology of the Cell Vol. 18, 5100 –5112, December 2007 Acclimation of Saccharomyces cerevisiae to Low D Temperature: A Chemostat-based Transcriptome Analysis□

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Source URL: www.molbiolcell.org

Language: English