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         Saccharomyces:     more books (100)
  1. Ethanolic fermentation of acid pre-treated starch industry effluents by recombinant Saccharomyces cerevisiae strains [An article from: Bioresource Technology] by J. Zaldivar, C. Roca, et all
  2. CHEMICAL MECHANISM OF HOMOCITRATE SYNTHASE FROM Saccharomyces cerevisiae by jinghua qian, 2009-05-31
  3. Unequal sister chromatid exchange in the rDNA array of Saccharomyces cerevisiae [An article from: Mut.Res.-Genetic Toxicology and Environmental Mutagenesis] by M. Motovali-Bashi, Z. Hojati, et all 2004-12-12
  4. The Molecular and Cellular Biology of the Yeast Saccharomyces: Vol. 3, Cell Cycl by James R.; Pringle, John; jones, Elizabeth Broach, 1997
  5. The Saccharomyces cerevisiae PDS1 and RAD9 checkpoint genes control different DNA double-strand break repair pathways [An article from: DNA Repair] by D. DeMase, L. Zeng, et all 2005-01-02
  6. Methoden zur effizienten Proteinidentifizierung anhand von Massenspektrometrie am Beispiel des mitochondrialen Außenmembran-Proteoms der Bäckerhefe Saccharomyces cerevisiae by Andreas M. Böhm, 2006-11-30
  7. Genetics (Journal) March 2000 Volume 154, No.3: Third International Symposium of Fungal Genomics; Trinucleotide Repeats Are Clustered in Regulatory Genes in Saccharomyces Cerevisiae by Genetics Society Of America, 2000
  8. Molecular Genetic Analysis of the Ubiquitin-Protein Ligase System of Saccharomyces Cerevisiae by John Patrick McGrath, 1991
  9. Xylose fermentation by genetically modified Saccharomyces cerevisiae 259ST in spent sulfite liquor [An article from: Bioresource Technology] by S.S. Helle, A. Murray, et all 2004-04-01
  10. Acción de un campo magnético sobre un cultivo aireado de Saccharomyces cerevisiae.: An article from: Interciencia by Jose Edgar Zapata Montoya, Margarita Hoyos Ramirez, et all 2005-07-01
  11. Influence of specific growth limitation on biosorption of heavy metals by Saccharomyces cerevisiae [An article from: International Biodeterioration & Biodegradation] by P. Dostalek, M. Patzak, et all
  12. Adaptation of a recombinant xylose-utilizing Saccharomyces cerevisiae strain to a sugarcane bagasse hydrolysate with high content of fermentation inhibitors [An article from: Bioresource Technology] by C. Martin, M. Marcet, et all 2007-07-01
  13. Wheat Beer: Wheat, Saccharomyces Cerevisiae, Berliner Weisse, Gose, Paulaner, Weihenstephan, Magic Hat Brewing Company, Lemon
  14. Psoralen-sensitive mutant pso9-1 of Saccharomyces cerevisiae contains a mutant allele of the DNA damage checkpoint gene MEC3 [An article from: DNA Repair] by J.M. Cardone, L.F. Revers, et all

61. WINE BUSINESS ONLINE - News & Information For Wine Industry Professionals
Winemaking Properties and Potential of saccharomyces Bayanus Wine Yeast, Todayon Wine Business, Winemaking Characteristics of saccharomyces Bayanus.
http://winebusiness.com/Winemaking/webarticle.cfm?AID=86763&ISSUEID=86705

62. WINE BUSINESS MONTHLY
April 01, 2004, Volume XI, Issue 4. Winemaking Properties and Potential of saccharomycesBayanus Wine Yeast. Winemaking Characteristics of saccharomyces Bayanus.
http://winebusiness.com/html/MonthlyArticle.cfm?AId=86763&issueId=86705

63. Dorlands Medical Dictionary
saccharomyces (Sac·cha·ro·my·ces) (sak²schwaro-mi¢semacrz)saccharo- + Gr. saccharomyces baya¢nus, S. pastorianus.
http://www.mercksource.com/pp/us/cns/cns_hl_dorlands.jspzQzpgzEzzSzppdocszSzuszS

64. Saccharomyces Cerevisiae - Encyclopedia Article About Saccharomyces Cerevisiae.
encyclopedia article about saccharomyces cerevisiae. saccharomyces cerevisiaein Free online English dictionary, thesaurus and encyclopedia.
http://encyclopedia.thefreedictionary.com/Saccharomyces cerevisiae
Dictionaries: General Computing Medical Legal Encyclopedia
Saccharomyces cerevisiae
Word: Word Starts with Ends with Definition Saccharomyces cerevisiae Scientific classification Scientific classification refers to how biologists group and categorize extinct and living species of organisms. Modern classification has its roots in the system of Carolus Linnaeus, who grouped species according to shared physical characteristics. These groupings have been revised since Linnaeus to improve consistency with the Darwinian principle of common descent. Molecular systematics, which uses Genomic DNA analysis has driven many recent revisions and is likely to continue to do so. Scientific classification belongs to the science of taxonomy or biological systematics.
Click the link for more information. Domain The three domain system of biological classification was introduced by Carl Woese to reflect his discovery that the prokaryotes comprise two very different groups of organisms. In it, all living things are grouped into three domains. Two of these, the Bacteria and Archaea (originally Eubacteria and Archaebacteria), include prokaryotes. The third, the Eukarya or Eukaryota, includes all eukaryotes, including the previously-established kingdoms Animalia, Plantae, Fungi, and Protista.
Click the link for more information.

65. SacchDB (
saccharomyces). Resource Profile. Type of Resource URL Go to theSacchDB (saccharomyces) Web Site. Publisher Stanford University.
http://www.biospace.com/publication_detail.cfm?RID=124904

66. Molecular / Cell. Bio. Of The Yeast Saccharomyces
Volumes 1 3......Molecular / Cell. Bio. Of The Yeast saccharomyces Resource Profile. Typeof Resource Book, Science Research. Resource
http://www.biospace.com/publication_detail.cfm?RID=87804

67. EPA: Federal Register: Yeast Extract Hydrolysate From Saccharomyces Cerevisiae;
Yeast Extract Hydrolysate from saccharomyces cerevisiae; Exemptionfrom the Requirement of a Tolerance , Federal Register document.
http://www.epa.gov/fedrgstr/EPA-PEST/2004/March/Day-03/p4706.htm
Federal Register Environmental Documents Recent Additions Contact Us Print Version Search: EPA Home Federal Register FR Years FR Months ...
and Regulations
Yeast Extract Hydrolysate from Saccharomyces cerevisiae; Exemption from the Requirement of a Tolerance
horne.diana@epa.gov http://www.epa.gov/fedrgstr/ A frequently updated electronic version of 40 CFR part 180 is available at http://www.access.gpo.gov/ nara/cfr/cfrhtml_00/Title_40/40cfr180_00.html a beta site currently under development. An electronic version of the public docket is available through EPA's electronic public docket and comment system, EPA Dockets. You may use EPA Dockets at http://www.epa.gov/edocket/ tompkins.jim@epa.gov opp-docket@epa.gov 58 FR 51735 , October 4, 1993). Because this rule has been exempted from review under Executive Order 12866 due to its lack of significance, this rule is not subject to Executive Order 13211, Actions Concerning Regulations That Significantly Affect Energy Supply, Distribution, or Use ( 66 FR 28355 , May 22, 2001). This final rule does not contain any information collections subject to OMB approval under the Paperwork Reduction Act (PRA), 44 U.S.C. 3501 et seq., or impose any enforceable duty or contain any unfunded mandate as described under Title II of the Unfunded Mandates Reform Act of 1995 (UMRA) (Public Law 104-4). Nor does it require any special considerations under Executive Order 12898, entitled Federal Actions to Address Environmental Justice in Minority Populations and Low-Income Populations (59 FR 7629, February 16, 1994); or OMB review or any Agency action under Executive Order 13045, entitled Protection of Children from Environmental Health Risks and Safety Risks (

68. Kluwer Online Internet Publishing System - Journal Of Structural And Functional
reserved. Establishing the yeast saccharomyces cerevisiae as a systemfor expression of human proteins on a proteomescale. Caterina
http://dx.doi.org/10.1023/A:1026226429429
This web page uses frames, but your browser doesn't support them.

69. Genome-Scale Reconstruction Of The Saccharomyces Cerevisiae Metabolic Network
Supplementary Information. GenomeScale Reconstruction of the saccharomycescerevisiae Metabolic Network. Jochen Förster †, §, Iman
http://www.cpb.dtu.dk/models/yeastmodel.html
Supplementary Information Genome-Scale Reconstruction of the Saccharomyces cerevisiae Metabolic Network Jochen Förster , Iman Famili , Patrick Fu , Bernhard Ø. Palsson , and Jens Nielsen † Center for Process Biotechnology, BioCentrum-DTU, Technical University of Denmark, DK-2800 Lyngby, Denmark * Department of Bioengineering, University of California San Diego, 9500 Gilman Drive, La Jolla, California 92093-0419, USA § Present address: Fluxome Sciences A/S , Soltofts Plads, Building 223, Technical University of Denmark, DK-2800 Lyngby, Denmark # J. F. and I. F. contributed to this work equally jn@biocentrum.dtu.dk Genome Research (2003) 13:244-253 Abstract The metabolic network in the yeast Saccharomyces cerevisiae was reconstructed using currently available genomic, biochemical, and physiological information. The metabolic reactions were compartmentalized between the cytosol and the mitochondria, and transport steps between the compartments and the environment were included. A total of 708 structural open reading frames (ORFs) were accounted for in the reconstructed network, corresponding to 1035 metabolic reactions. Further 140 reactions were included

70. CLIB - Saccharomyces Bayanus (S. Uvarum)
Translate this page Catalogue. saccharomyces bayanus (S. uvarum) retour/back. Evol. Microbiol. 51, 1607-1618).CLIB 98 saccharomyces bayanus (S. uvarum) Beijerinck VKM 1146-6B.
http://www.inra.fr/Internet/Produits/clib/collection/souches/s_bsu.htm
C ollection de
L evures d'
I
B iotechnologique Catalogue Saccharomyces bayanus (S. uvarum)
Saccharomyces bayanus et Saccharomyces bayanus (uvarum) Saccharomyces uvarum CBS 395 forment des taxons distincts. On the basis of several physiological and genetical observations, we consider that the species Saccharomyces bayanus and Saccharomyces bayanus (uvarum) , the latter represented by the type strain of Saccharomyces uvarum CBS 395 constitute two distinct taxons. Syst. Appl. Microbiol. , 286 - 294; Nguyen et al, Syst. Appl. Microbiol. , 71-85; Casaregola et al, Int. J. Syst. Evol. Microbiol.
CLIB 98
Saccharomyces bayanus (S. uvarum) Beijerinck
== VKM 1146-6B
CLIB 99
Saccharomyces bayanus (S. uvarum) Beijerinck
== 58 I-2B
CLIB 100 Saccharomyces bayanus (S. uvarum) Beijerinck CLIB 101 Saccharomyces bayanus (S. uvarum) Beijerinck == SCU 11-4A CLIB 102 Saccharomyces bayanus (S. uvarum) Beijerinck == SCU 13-1B CLIB 103 Saccharomyces bayanus (S. uvarum)

71. CLIB - Saccharomyces Exiguus
Translate this page Catalogue. saccharomyces exiguus retour/back. CLIB 162 saccharomyces exiguus Reessex Hansen (1888) = CBS2141, ATCC60477, NRRL Y-12641, IFO 1170, DBVPG6402
http://www.inra.fr/Internet/Produits/clib/collection/souches/s_e.htm
C ollection de
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I
B iotechnologique Catalogue Saccharomyces exiguus
CLIB 162

Saccharomyces exiguus Reess ex Hansen (1888)
= CBS2141, ATCC60477, NRRL Y-12641, IFO 1170, DBVPG6402
CLIB 179
Saccharomyces exiguus Reess ex Hansen (1888)T
= CBS379, ATCC10599, NCYC814, DBVPG6252, IFO 1128, JCM1790, NRRL Y-12640
CLIB 437 Saccharomyces exiguus Reess ex Hansen (1888) CLIB 597 Saccharomyces exiguus Reess ex Hansen (1888) = CBS135, ATCC22034, DBVPG6413, IFO 0660, NCYC163, VKM Y-738 CLIB 598 Saccharomyces exiguus Reess ex Hansen (1888) CLIB 599 Saccharomyces exiguus Reess ex Hansen (1888) = NRRL Y-1349 Catalogue INRA UMR216, CNRS URA1925, INA-PG 78850 Thiverval Grignon, France

72. Saccharomyces Cerevisiae
saccharomyces cerevisiae IPG 612. copyright©2001; R. Wildgruber; AG Proteomik; TUM.
http://www.weihenstephan.de/blm/deg/2ddb/
Saccharomyces cerevisiae IPG 6-12

73. Lycaeum > Leda > Saccharomyces Cerevisiae
Lycaeum Homepage Forums Chat Hosted Sites Books Contact About FedWatch FedWatchReferrers. Sponsor. saccharomyces cerevisiae. Brewer s yeast. Preparations
http://leda.lycaeum.org/?ID=85

74. YEAST GRID (The Saccharomyces Cerevisiae General Repository For Interaction Data
Search Yeast GRID. example accession, gi, orf name, gene name, etc OspreyNetwork Visualization System. saccharomyces Genome Database. The GRID. Osprey.
http://biodata.mshri.on.ca/yeast_grid/servlet/SearchPage
Search Yeast GRID Home Support Forums Database Statistics Downloads ... About Yeast GRID
Search Yeast GRID example: accession, gi, orf name, gene name, etc...
Osprey Network Visualization System Saccharomyces Genome Database The GRID Osprey Osprey is a software platform for visualization of complex interaction networks via data-rich graphical representations
Download Here
SGD SGD is a scientific database of the molecular biology and genetics of the yeast Saccharomyces cerevisiae
Visit SGD
GRID Databases The GRID is a database of genetic and physical interactions developed in The Tyers Group at the Samuel Lunenfeld Research Institute at Mount Sinai Hospital.
Visit GRID

Osprey Version 1.2.0 Released [March 15th, 2004 @ 12:09:51] Today, Osprey version 1.2.0 was released to the public. This version is fully compatible with Mac OS X, RedHat Linux, and all version of Microsoft Windows
Some changes implemented in this release include:
  • Access to more than 50,000 Interactions Annotation for Yeast, Fly, Worm, Human, Mouse, Zebrafish, S. Pombe, and Rat Increased memory for large datasets Ability to organize and add datasets Java webstart capability Fixes to many 1.0.1 bugs
  • 75. Molecular Biology Of Saccharomyces|KLUWER Academic Publishers
    Books » Molecular Biology of saccharomyces. Molecular Biology of saccharomyces.Add to cart. edited by LA Grivell Reprinted from `ANTONIE
    http://www.wkap.nl/prod/b/0-7923-1770-X
    Title Authors Affiliation ISBN ISSN advanced search search tips Books Molecular Biology of Saccharomyces
    Molecular Biology of Saccharomyces
    Add to cart

    edited by
    L.A. Grivell
    Reprinted from `ANTONIE VAN LEEUWENHOEK', 62: 1-2
    At a fundamental research level, the yeasts offer valuable opportunities for modelling regulatory and metabolic processes in multicellular eukaryotic organisms: this volume deals with the multifunctional chromosome regulatory proteins, topoisomerase and nuclear transport. A combination of biochemical and genetic approaches applied to the yeast translation system is also currently yielding a wealth of data, while the mating pheromone signal transduction pathway in yeasts provides a valuable analogue of the signal transduction components used by multicellular organisms, including receptors, G proteins, protein kinases and transcription factors.
    With a well-established history of fermantation studies, yeasts remain the first-choice vehicle for production of heterologous eukaryotic proteins. Interest is diversifying, as an increasing number of non- Saccharomyces species are now being utilised for the production of specific heterologous proteins.

    76. Saccharomyces|KLUWER Academic Publishers
    Books » saccharomyces. saccharomyces. Add to cart. edited by MichaelF. Tuite The University of Kent, Canterbury, UK Stephen G. Oliver
    http://www.wkap.nl/prod/b/0-306-43634-5
    Title Authors Affiliation ISBN ISSN advanced search search tips Books Saccharomyces
    Saccharomyces
    Add to cart

    edited by
    Michael F. Tuite
    The University of Kent, Canterbury, UK
    Stephen G. Oliver
    University of Manchester, UK
    Book Series: BIOTECHNOLOGY HANDBOOKS Volume 4
    All aspects of the biology of the yeast organism Saccharomyces are covered in this work, from DNA preparation to the use of yeast in beer making. The editors provide a wide range of traditional and current academic and commercial methodologies available to yeast researchers. Contents and Contributors
    Kluwer Academic/Plenum Publishers Hardbound, ISBN 0-306-43634-5 February 1991, 342 pp. EUR 169.00 / USD 186.00 / GBP 117.00 Home Help section About Us Contact Us ... Search

    77. Saccharomyces Cerevisiae
    Approximately 24,000 unique links have been established among 2356 of the 6217 proteinsof saccharomyces cerevisiae by methods described in Assigning Protein
    http://www.doe-mbi.ucla.edu/Services/GPofYPF/
    Yeast Protein Function Assignment
    Enter a yeast ORF name (for example, YOR128C):
    or choose from the complete list of yeast ORFS Approximately 24,000 unique links have been established among 2356 of the 6217 proteins of Saccharomyces cerevisiae by methods described in Assigning Protein Functions by Comparative Genome Analysis: Protein Phylogenetic Profiles Proc. Natl. Acad. Sci :4285-4288 (1999), link to PNAS abstract or Medline abstract ) and in Detecting Protein Function and Protein-Protein Interactions from Genome Sequences Science :751-753 (1999), link to Science abstract or Medline abstract ). Approximately 2500 additional links are derived from known experimental interactions in the DIP database and MIPS database , from yeast proteins whose E. coli homologs catalyze sequential metabolic reactions (as defined in the EcoCyc database ), and from yeast proteins whose mRNAs show correlated expression patterns using publicly available gene chip data from the Stanford Genomic group and Pat Brown's Lab . Lastly, we predict a protein's function from the function of proteins that it is linked to using the hierarchal annotations of the MIPS yeast database . Explanation of the prediction methods, error rates, etc. appears in

    78. Microautophagy Of The Saccharomyces Cerevisiae Nucleus
    Abstract Portions of the saccharomyces cerevisiae nucleus are targeted to thevacuole and degraded by “piecemeal microautophagy of the nucleus” (Pmn).
    http://www.eurekah.com/abstract.php?chapid=1414&bookid=98&catid=69

    79. Saccharomyces Spp
    saccharomyces spp Mysteries of the yeast . Yeasts are predominantlyunicellular fungi which exist throughout nature. They are most
    http://www.micron.ac.uk/Organisms/Saccharomyces/Yeast.html
      Saccharomyces spp "Mysteries of the yeast" Yeasts are predominantly unicellular fungi which exist throughout nature. They are most frequently found associated with plant leaves, flowers, soil, insects and the skin and intestinal tract of warm blooded animals. The baking and brewing yeast, Saccharomyces cerevisiae is the most well known species but over 800 yeast species have been described, including many closely related Saccharomyces species . The taxonomy and classification of these organisms was regarded until recently as a specialist discipline but much progress has been made in the past few years through the introduction of molecular approaches including ribosomal RNA phylogenetics. Saccharomyces cerevisiae , in addition to its enormous commercial significance, has also long provided a valuable model system for molecular genetic research and is currently a lead organism in eukaryotic genomics. Taken together, these factors have led to a high level of interest in comparative phylogenetic analysis of yeasts closely related to S. cerevisiae

    80. Entrez PubMed
    Click here to read Largescale prediction of saccharomyces cerevisiaegene function using overlapping transcriptional clusters.
    http://www.biomedcentral.com/pubmed/12089522
    Entrez PubMed Nucleotide Protein ... Books Search PubMed Protein Nucleotide Structure Genome Books CancerChromosomes 3D Domains Domains Gene GEO GEO DataSets HomoloGene Journals MeSH NCBI Web Site OMIM PMC PopSet SNP Taxonomy UniGene UniSTS for Limits Preview/Index History Clipboard ...
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    Nat Genet. 2002 Jul;31(3):255-65. Epub 2002 Jun 24. Related Articles, Links
    Large-scale prediction of Saccharomyces cerevisiae gene function using overlapping transcriptional clusters. Wu LF, Hughes TR, Davierwala AP, Robinson MD, Stoughton R, Altschuler SJ.

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