P1: SFK/UKS BLBS102-c33 P2: SFK BLBS102-Simpson 648 March 21, 2012 14:5 Trim: 276mm X 219mm Printer Name: Yet to Come Part 5: Fruits, Vegetables, and Cereals Fujii T et al 1994 Molecular cloning, sequence analysis, and expression of the yeast alcohol acetyltransferase gene Appl Environ Microbiol 60: 2786–2792 Fukuda K et al 1998 Balance of activities of alcohol acetyltransferase and esterase in Saccharomyces cerevisiae is important for production of isoamyl acetate Appl Environ Microbiol 64: 4076–4078 Gaur NK, Klotz SA 1997 Expression, cloning, and characterization of a Candida albicans gene, ALA1, that confers adherence properties upon Saccharomyces cerevisiae for extracellular matrix proteins Infect Immun 65: 5289–5294 Gee DA, Ramirez WF 1994 A flavour model for beer fermentation J Inst Brew 100: 321–329 Geiger E, Piendl A 1976 Technological factors in the formation of acetaldehyde during fermentation MBAA Tech Quart 13: 51–61 Gjermansen C et al 1988 Towards diacetyl-less brewers’ yeast Influence of ilv2 and ilv5 mutations J Basic Microbiol 28: 175–183 Godtfredsen SE et al 1983 Application of the acetolactate decarboxylase from Lactobacillus casei for accelerated maturation of beer Proceedings of the European Brewery Convention Congress, London, pp 161–168 Godtfredsen SE et al 1984 Occurrence of α-acetolactate decarboxylases among lactic acid bacteria and their utilization for maturation of beer Appl Microbiol Biotechnol 20: 23–28 Goldenthal MJ, Vanoni M 1990 Genetic mapping and biochemical analysis of mutants in the maltose regulatory gene of the MAL1 locus of Saccharomyces cerevisiae Arch Microbiol 154: 544–549 Goldenthal MJ et al 1987 Regulation of MAL gene expression in yeast: gene dosage effects Mol Gen Gen 209: 508–517 Goossens E et al 1993 Decreased diacetyl production in lager brewing yeast by integration of the ILV5 gene Proceedings of the European Brewery Convention Congress, Oslo, pp 251–258 Green CB et al 2004 T-PCR detection of Candida albicans ALS gene expression in the reconstituted human epithelium (RHE) model of oral candidiasis and in model biofilms Microbiology 150: 267–275 Guo B et al 2000 A Saccharomyces gene family involved in invasive growth, cell-cell adhesion, and mating Proc Natl Acad Sci USA 97: 12158–12163 Hammond JRM 1993 Brewer’s yeast In: AH Rose, JS Harrison (eds.) The Yests Academic Press, London, pp 7–67 Han E-K et al 1995 Characterization of AGT1 encoding a general α-glucoside transporter from Saccharomyces Mol Microbiol 17: 1093–1107 Hansen J, Kielbrandt MC 1996a Inactivation of MET10 in brewers’ yeast specifically increases SO2 formation during beer production Nat Biotechnol 14: 1587–1591 Hansen J, Kielbrandt MC 1996b Inactivation of MET2 in brewers’ yeast increases the level of sulphite in beer J Biotechnol 50: 75–87 Hardwick WA 1995 History and antecedents of brewing In: WA Hardwick (ed.) Handbook of Brewing Marcel Dekker, New York, pp 37–51 Haukeli AD, Lie S 1978 Conversion of α-acetolactate and removal of diacetyl: a kinetic study J Inst Brew 84: 85–89 Haukeli AD, Lie S 1979 Yeast growth and metabolic changes during brewery fermentation Proceedings of the European Brewery Convention Congress, Berlin, pp 461–473 Hazelwood LA et al 2008 The Ehrlich pathway for fusel alcohol production: a century of research on Saccharomyces cerevisiae metabolism Appl Environ Microbiol 74: 2259–2266 Hegarty PK et al 1995 Phenyl ethanol—a factor determining lager character Proceedings of the European Brewery Convention Congress, pp 515–522 Hirata D et al 1992 Stable overproduction of isoamylalcohol by S cerevisiae with chromosome-integrated copies of the LEU4 genes Biosci Biotechnol Biochem 56: 1682–1683 Hough JS et al 1982 Malting and Brewing Science—Volume 2: Hopped Wort and Beer Chapman and Hall, London Hounsa CG et al 1998 Role of trehalose in survival of Saccharomyces cerevisiae under osmotic stress Microbiology 144: 671–680 Hoyer LL 2001 The ALS gene family of Candida albicans Trends Microbiol 9: 176–180 Hoyer LL et al 1998 Identification of Candida albicans ALS2 and ALS4 and localization of ALS proteins to the fungal cell surface J Bacteriol 180: 5334–5343 Huuskonen A et al 2010 Selection from industrial lager yeast strains of variants with improved fermentation performance in very-high-gravity worts Appl Environ Microbiol 76: 1563–1573 Hu Z et al 1995 MIG1-dependent and MIG1-independent glucose regulation of MAL gene expression in Saccharomyces cerevisiae Curr Genet 28: 258–266 Inoue T 1995 Development of a two-stage immobilized yeast fermentation system for continuous beer brewing Proceedings of the European Brewery Convention Congress, Brussels, pp 25–36 Inoue T, Yamamoto Y 1970 Diacetyl and beer fermentation Proceedings of the Annual Meeting of the American Society of Brewing Chemists, pp 198–208 Inoue T et al 1968 Mechanism of diacetyl formation in beer Proceedings of the Annual Meeting of the American Society of Brewing Chemists, MN, pp 158–165 Iverson WG 1994 Ethyl acetate extraction of beer: quantitative determination of additional fermentation by-products J Am Soc Brew Chem 52: 91–95 Jakobsen M 1982 The effect of yeast handling procedures on yeast oxygen requirement and fermentation Proc Inst Brew (Aust N.Z Section) Conv, Adelaide, pp 132–137 Jensen S 1993 Using ALDC to speed up fermentation Brewers’ Gardian, September: 55–56 Jespersen L et al 1999 Multiple α-glucoside transporter genes in brewer’s yeast Appl Environ Microbiol 65: 450–456 Jin YL, Speers RA 1999 Flocculation of Saccharomyces cerevisiae Food Res Int 31: 421–440 Kacl´ıkov´a E et al 1992 Fumaric acid overproduction in yeast mutants deficient in fumarase FEMS Microbiol Lett 91: 101106 Kăappeli O et al 1985 Transient responses of Saccharomyces uvarum to a change of growth-limiting nutrient in continuous culture J Gen Microbiol 131: 47–52 Karel SF et al 1985 The immobilization of whole cells: engineering principles Chem Eng Sci 40: 1321–1353 Klein CJ.L et al 1996 Alleviation of glucose repression of maltose metabolism by MIG1 disruption in Saccharomyces cerevisiae Appl Environ Microbiol 62: 4441–4449 Klopper WJ et al 1986 Organic acids and glycerol in beer J Inst Brew 92: 311–318 P1: SFK/UKS BLBS102-c33 P2: SFK BLBS102-Simpson March 21, 2012 14:5 Trim: 276mm X 219mm Printer Name: Yet to Come 33 Biochemistry of Beer Fermentation Kobayashi O et al 1998 Region of Flo1 proteins responsible for sugar recognition J Bacteriol 180: 6503–6510 Kodama Y et al 1995 Improvement of maltose fermentation efficiency: constitutive expression of MAL genes in brewing yeasts J Am Soc Brew Chem 53: 24–29 Kodama Y et al 2001 Control of higher alcohol production by manipulation of the BAP2 gene in brewing yeast J Am Soc Brew Chem 59: 5762 Kronlăof J, Linko M 1992 Production of beer using immobilized yeast encoding α-acetolactate decarboxylase J Inst Brew 98: 479491 Kronlăof J, Virkajăarvi I 1999 Primary fermentation with immobilized yeast Proceedings of the European Brewery Convention Congress, Cannes, pp 761–770 Kubo Y et al 2000 Effect of gene disruption of succinate dehydrogenase on succinate production in sake yeast strain J Biosci Bioeng 90: 619–624 Kunze W 1999 Technology of Brewing and Malting VLB, Berlin Landaud S et al 2001 Top pressure and temperature control of the fusel alcohol/ester ratio through yeast growth in beer fermentation J Inst Brew 10: 107–117 Lagunas R 1979 Energetic irrelevance of aerobiosis for S cerevisiae growing on sugars Mol Cell Biochem 27: 139–146 Lea AH, Piggott JRP 1995 Fermented Beverage Production Blackie Academic and Professional, Glasgow Lee S et al 1995 Yeast strain development for enhanced production of desirable alcohols/esters in beer J Am Soc Brew Chem 39: 153–156 Li F, Palecek SP 2003 EAP1, a Candida albicans gene involved in binding human epithelial cells Eukaryot Cell 2: 1266–1273 Lievense JC, Lim HC 1982 The growth and dynamics of Saccharomyces cerevisiae In: GT Tsao et al (eds.) Annual Reports on Fermentation Processes Academic Press, New York Lilly M et al 2000 Effect of increased yeast alcohol acetyltransferase activity on flavor profiles of wine and distillates Appl Environ Microbiol 66: 744–753 Lilly M et al 2006 The effect of increased branched-chain amino acid transaminase activity in yeast on the production of higher alcohols and on the flavour profiles of wine and distillates FEMS Yeast Res 6: 726–743 Linko M et al 1993 Use of brewer’s yeast expressing α-acetolactate decarboxylase in conventional and immobilized fermentations MBAA Tech Quart 30: 93–97 Linko M et al 1997 Main fermentation with immobilized yeast—a breaktrough? Proceedings of the European Brewery Convention Congress, Maastricht, pp 385–394 Linko M et al 1998 Recent advances in the malting and brewing industry J Biotechnol 65: 85–98 Lo WS, Dranginis AM 1998 The cell surface flocculin Flo11 is required for pseudohyphae formation and invasion by Saccharomyces cerevisiae Mol Biol Cell 9: 161–171 Lombardo A et al 1990 Cloning and characterization of the iron-sulfur subunit gene succinate dehydrogenase from Saccharomyces cerevisiae J Biol Chem 265: 10419–10423 Lomni H et al 1990 Immobilized yeast reactor speeds beer production Food Technol 5: 128–133 Lucero P et al 1993 Catabolite inactivation of the yeast maltose transporter is due to proteolysis FEBS Lett 333: 165–168 649 MacDonald J et al 1984 Current approaches to brewery fermentations Prog Ind Microbiol 19: 47–198 MacWilliam I.C 1968 Wort composition J Inst Brew 74: 38–54 Maeba H et al 2000 Primary fermentation with immobilized yeast in porous chitosan beads Pilot scale trial Proceedings of the 26th Convention of the Institute Brewing, Australia and New Zealand Section, Singapore, pp 82–86 Magarifuchi T et al 1995 Effect of yeast fumarase gene (FUM1) disruption on the production of malic, fumaric and succinic acids in sake mash J Ferment Bioeng 80: 355–361 Magee PT, de Robinson-Szulmajster H 1968 The regulation of isoleucine-valine biosynthesis in Saccharomyces cerevisiae Properties and regulation of the activity of acetohydroxyacid synthase Eur J Biochem 3: 507–511 Majara N et al 1996 Trehalose: a stress protectant and stress indicator compound for yeast exposed to adverse conditions J Am Soc Brew Chem 54: 221–227 Malcorps P, Dufour J-P 1987 Proceedings of the European Brewery Convention Congress, Madrid, p 377 Malcorps P et al 1991 A new model for the regulation of ester synthesis by alcohol acetyltransferase in Saccharomyces cerevisiae J Am Soc Brew Chem 49: 47–53 Masschelein CA 1981 Role of fatty acids in beer flavour EBC Flavour Symposium, Copenhagen, Denmark EBC Monograph VII, pp 211–221, 237–238 Masschelein CA 1997 A realistic view on the role of research in the brewing industry today J Inst Brew 103: 103–113 Masschelein CA, Andries M 1995 Future scenario of immobilized systems: promises and limitations EBC Monograph XXIV, EBC Symposium on immobilized yeast applications in the brewing industry, Espoo, pp 223–241 Masschelein CA et al 1995 The membrane loop concept: a new approach for optimal oxygen transfer into high cell density pitching yeast suspensions Proceedings of the European Brewery Convention Congress, Brussels, pp 377–386 Maule DRJ 1967 Rapid gas chromatographic examination of beer flavour J Inst Brew 73: 351–361 McGovern PE et al 1996 Neolithic resinated wine Nature 381: 480–481 Meersman E 1994 Biologische aanzuring met geămmobiliseerde melkzuurbacteriăen Cerevisia Biotechnol 19(4): 4246 Meilgaard MC 1975a Flavour chemistry of beer Part 1: flavour interactions between principle volatiles Tech Quart Master Brew Assoc Am 12: 107–117 Meilgaard MC 1975b Flavour chemistry of beer Part 2: flavour and threshold of 239 aroma volatiles Tech Quart Master Brew Assoc Am 12: 151–173 Mensour N et al 1995 Gas lift systems for immobilized cell systems EBC Monograph XXIV, EBC Symposium on Immobilized Yeast Applications in the Brewing Industry, Espoo, pp 125– 133 Mensour N et al 1996 Applications of immobilized yeast cells in the brewing industry In: RH Wijffels et al (eds.) Immobilized Cells: Basics and Applications Elsevier, Amsterdam, pp 661–671 Mensour N et al 1997 New developments in the brewing industry using immobilized yeast cell bioreactor systems J Inst Brew 103: 363–370 P1: SFK/UKS BLBS102-c33 P2: SFK BLBS102-Simpson 650 March 21, 2012 14:5 Trim: 276mm X 219mm Printer Name: Yet to Come Part 5: Fruits, Vegetables, and Cereals Michels CA et al 1992 The telomere-associated MAL3 locus of Saccharomyces is a tandem array of repeated genes Yeast 8: 655–665 Michnick S et al 1997 Modulation of glycerol and ethanol yields during alcoholic fermentation in Saccharomyces cerevisiae strains overexpressed or disrupted for GPD1 encoding glycerol3-phosphate dehydrogenase Yeast 13: 783–793 Minetoki T et al 1993 The purification, properties and internal peptide sequences of alcohol acetyltransferase isolated from Saccharomyces cerevisiae Biosci Biotechnol Biochem 57: 2094– 2098 Mithieux SM, Weiss AS 1995 Tandem integration of multiple ILV5 copies and elevated transcription in polyploid yeast Yeast 11: 311–316 Mockovciakov´a D et al 1993 The ogd1 and kgd1 mutants lacking 2-oxoglutarate dehydrogenase activity in yeast are allelic and can be differentiated by the cloned amber suppressor Curr Genet 24: 377–381 Moll M 2006 Fermentation and maturation of beer with immobilised yeasts J Inst Brew 112: 346 Moll M, Duteurtre B 1996 Fermentation and maturation of beer with immobilised microorganisms Brauwelt Int 14: 248–252 Moll M et al 1973 Continuous production of fermented liquids French Patent 73/23397; US Patent 4009286 Moonjai N et al 2000a Unsaturated fatty acid supplementation of stationary phase brewing yeast Cerevisia 25(3): 37–50 Moonjai N et al 2000b The effects of linoleic acid supplementation of cropped yeast on its performance and acetate ester synthesis J Inst Brew 108: 227–235 Murray CR et al 1984 The effect of yeast storage conditions on subsequent fermentations MBBA Tech Quart 21: 189–194 Nakatani K et al 1984 Kinetic studies of vicinal diketones in brewing Theoretical aspects for the formation of total vicinal diketones Tech Quart Master Brew Assoc Am 21: 175–183 Narziss L, Hellich P 1971 Ein Beitrag zur wesentlichen Beschleunigung der Găarung und Reifung des Bieres Brauwelt 111: 1491–1500 Narziss L et al 1992 Technology and composition of non-alcoholic beers Brauwelt Int 4: 396 Navr´atil M et al 2000 Fermented beverages produced by yeast cells entrapped in ionotropic hydrogels of polysaccharide nature Minerva Biotechnol 12: 337–344 Navr´atil M et al 2002 Production of non-alcoholic beer using free and immobilized cells of Sccharomyces cerevisiae deficient in tricarboxylic acid cycle Biotechnol Appl Biochem 35: 133–141 Nedovic VA et al 1997 Analysis of liquid axial dispersion in an internal loop gas-lift bioreactor for beer fermentation with immobilized yeast cells Proceedings of the 2nd European Conference on Fluidization, Bilbao, pp 627–635 Nedovic V et al 2005 Beer production using immobilised cells In: V Nedovic, R Willaert (eds.) Applications of Cell Immobilisation Biotechnology Kluwer Academic Publishers, Dordrecht, pp 259–273 Needleman RB et al 1984 MAL6 of Saccharomyces: a complex genetic locus containing three genes required for maltose fermentation Proc Natl Acad Sci USA 81: 2811–2815 Nehlin JO, Ronne H 1990 Yeast MIG1 repressor is related to the mammalian early growth response and Wilms’ tumour finger proteins EMBO J 9: 2891–2898 Nelissen B et al 1995 Phylogenetic classification of the major superfamily of membrane transport facilitators, as deduced from yeast genome sequencing FEBS Lett 377: 232–236 Nevoigt E, Stahl U 1997 Reduced pyruvate decarboxylase and increased glycerol-3-phosphate degydrogenase [NAD+ ] levels enhance glycerol production in Saccharomyces cerevisiae Yeast 12: 1331–1337 Nevoigt E et al 2002 Genetic engineering of brewing yeast to reduce the content of ethanol in beer FEMS Yeast Res 2: 225–232 Ni B, Needleman RB 1990 Identification of the upstream activating sequence of MAL and the binding sites for MAL63 activator of Saccharomyces cerevisiae Mol Cell Biol 10: 3797–3800 Nitzsche F et al 2001 A new way for immobilized yeast systems: secondary fermentation without heat treatment Proceedingsof the European Brewery Convention, Budapest, pp 486– 494 NN 2000 Fermentation and Maturation In: European Brewery Convention Manual of Good Practice Getrăanke-Fachverlag Hans Carl, Năurnberg NN 2005 Dossier sectoroverzicht van de Belgische brouwerijnijverheid Het Brouwersblad juni: 6–20 Novak S et al 2004 Regulation of maltose transport and metabolism in Saccharomyces cerevisiae Food Technol Biotechnol 42: 213218 Nykăanen L, Nykăanen I 1977 Production of esters by different yeast strains in sugar fermentations J Inst Brew 83: 30–31 Ohno T, Takahashi R 1986a Role of wort aeration in the brewing process Part 1: oxygen uptake and biosynthesis of lipids by the final yeast J Inst Brew 92: 84–87 Ohno T, Takahashi R 1986b Role of wort aeration in the brewing process Part 2: the optimal aeration conditions for the brewing process J Inst Brew 92: 88–92 Okabe M et al 1992 Growth and fermentation characteristics of bottom brewer’s yeast under mechanical stirring J Ferment Bioeng 73: 148–152 Omura F 2008 Targeting of mitochondrial Saccharomyces cerevisiae Ilv5p to the cytosol and its effect on vicinal diketone formation in brewing Appl Microbiol Biotechnol 78: 503–513 Onnela M-L et al 1996 Use of a modified alcohol dehydrogenase, ADH1, promotor in construction of diacetyl non-producing brewer’s yeast J Biotechnol 49: 101–109 Oshita K et al 1995 Clarification of the relationship between fusel alcohol formation and amino acid assimilation by brewing yeast using 13 C-labeled amino acid Proceedings of the European Brewery Convention Congress, Brussels, pp 387–402 Pajunen E 1995 Immobilized yeast lager beer maturation: DEAEcellulose at Synebrychoff EBC Monograph XXIV, EBC Symposium on Immobilized Yeast Applications in the Brewing Industry, Espoo, pp 2440 Pajunen E, Grăonqvist A 1994 Immobilized yeast fermenters for continuous lager beer maturation Proceedings of the 23rd Convention Institute of Brewing Australia and New Zealand Section, Sydney, pp 101–103 Panchal CJ, Stewart GG 1979 Utilization of wort carbohydrates Brew Digest June: 36–46 Pajunen E et al 2001 Controlled beer fermentation with continuous one-stage immobilized yeast reactor Proceedings of the European Brewery Convention, Budapest, pp 465–476 P1: SFK/UKS BLBS102-c33 P2: SFK BLBS102-Simpson March 21, 2012 14:5 Trim: 276mm X 219mm Printer Name: Yet to Come 33 Biochemistry of Beer Fermentation Panek AD 1991 Storage carbohydrates In: AH Rose, JS Harrison (eds.) The Yeasts, Volume 4, Yeast Organelles, 2nd edn Academic Press, London, pp 655–678 Panek AD, Panek AC 1990 Metabolism and thermotolerance function of trehalose in Saccharomyces cerevisiae: a current perspective J Biotechnol 14: 229–238 Pang SS, Duggleby RG 1999 Expression, purification, characterization, and reconstitution of the large and small subunits of yeast acetohydroxyacid synthase Biochemistry 38: 5222– 5231 Pang SS, Duggleby RG 2001 Regulation of yeast acetohydroxyacid synthase by valine and ATP Biochem J 357: 749–757 Patel GB, Ingledew WM 1973 Trends in wort carbohydrate utilization Appl Microbiol 26: 349–353 Parrou JL et al 1997 Effects of various types of stress on the metabolism of reserve carbohydrates in Saccharomyces cerevisiae: genetic evidence for a stress-induced recycling of glycogen and trehalose Microbiology 143: 1891–900 Peddie HAB 1990 Ester formation in brewery fermentations, J Inst Brew 96: 327–331 Peinado JM, Loureiro-Dias MC 1986 Reversible loss of affinity induced by glucose in the maltose-H+ symport of Saccharomyces cerevisiae Biochim Biophys Acta 856: 189–192 Petrik M et al 1983 An expanded concept for the glucose effect in the yeast Saccharomyces uvarum: involvement of short- and long-term regulation J Gen Microbiol 129: 43–49 Pfisterer E, Stewart GG 1975 Some aspects on the fermentation of high gravity worts Proceedings of the European Brewery Convention Congress, Nice, pp 255–267 Pittner H et al 1993 Continuous production of acidified wort for alcohol-free-beer with immobilized lactic acid bacteria Proceedings of the European Brewery Convention Congress, Oslo, pp 323–329 Pugh TA et al 1997 The impact of wort nitrogen limitation on yeast fermentation performance and diacetyl MBAA Tech Quart 34: 185–189 Quain DE 1988 Studies on yeast physiology: impact of fermentation performance and product quality J Inst Brew 95: 315–323 Quain DE, Tubb RS 1982 The importance of glycogen in brewing yeast MBAA Tech Quart 19: 19–23 Ramos-Jeunehomme C et al 1989 Proceedings of the European Brewery Convention Congress, pp 513–519 Ramos-Jeunehomme C et al 1991 Why is ester formation in brewery fermentations yeast strain dependent? Proceedings of the European Brewery Convention Congress, Lisbon, pp 257– 264 Rautio J, Londesborough J 2003 Maltose transport by brewer’s yeast in brewer’s wort J Inst Brew 109: 251–261 Reed G, Nogodawithana TW 1991 Yeast Technology Chapter Van Nostrand Reinhold, New York Remize F et al 1999 Glycerol overproduction by engineered Saccharomyces cerevisiae wine yeast strains leads to substantial changes in by-product formation and to stimulation of fermentation rate in stationary phase Appl Environ Microbiol 65: 143–149 Reynolds TB, Fink GR 2001 Baker’s yeast, a model for fungal biofilm formation Science 291: 878–881 Riballo E et al 1995 Catabolite inactivation of the yeast maltose transporter occurs in the vacuole after internalization by endocytosis J Bacteriol 177: 5622–5627 651 Rieger M et al 1983 The role of limited respiration in the incomplete oxidation of glucose by Saccharomyces cerevisiae J Gen Microbiol 129: 653–661 Rintala E et al 2008 Transcription of hexose transporters of Saccharomyces cerevisiae is affected by change in oxygen provision BMC Microbiol 8: 53 Rogers PJ, Stewart PR 1973 Mitochondrial and peroxisomal contributions to the energy metabolism of Saccharomyces cerevisiae in continuous culture J Gen Microbiol 79: 205–217 Romano P, Suzzi G 1992 Production of H2 S by different yeast strains during fermentation Proceedings of the 22nd Convention of the Institute of Brewing, Melbourne, Institute of Brewing, Adelaide, Australia, pp 96–98 Rosculet G 1971 Aroma and flavour of beer Part II: the origin and nature of less-volatile and non-volatile components of beer Brew Digest 46(6): 96–98 Rostgaard-Jensen B et al 1987 Isolation and characterization of an α-acetolactate decarboxylase useful for accelerated beer maturation Proceedings of the European Brewery Convention Congress, pp 393–400 Royston MG 1966 Tower fermentation of beer Process Biochem 1: 215–221 Ryder D, Masschelein CA 1983 Aspects of metabolic regulatory systems and physiological limitations with a view to the improvement of brewing performance EBC Symposium on Biotechnology, Monograph IX, Nutfiels, pp 2–29 Sablayrolles JM, Ball CB 1995 Fermentation kinetics and the production of volatiles during alcoholic fermentation J Am Soc Brew Chem 53: 71–78 Saerens SM et al 2006 The Saccharomyces cerevisiae EHT1 and EEB1 genes encode novel enzymes with medium-chain fatty acid ethyl ester synthesis and hydrolysis capacity J Biol Chem 281: 4446–4456 Saison D et al 2009 Contribution of staling compounds to the aged flavour of lager beer by studying their flavour thresholds Food Chem 114: 1206–1215 Salema-Oom M et al 2005 Maltotriose utilization by industrial Saccharomyces strains: characterization of a new member of the alpha-glucoside transporter family Appl Environ Microbiol 71: 5044–5049 Selecky R et al 2008 Beer with reduced ethanol content produced using Saccharomyces cerevisiae yeasts deficient in various tricarboxylic acid cycle enzymes J Inst Brew 114: 97–101 Sheppard DC et al 2004 Functional and structural diversity in the Als protein family of Candida albicans J Biol Chem 279: 30480–30489 Shindo S et al 1994 Suppression of α-acetolactate formation in brewing with immobilized yeast J Inst Brew 100: 69–72 Siegel MH, Robinson CW 1992 Applications of airlift gasliquid-solid reactors in biotechnology Chem Eng Sci 47: 3215 3229 Siro M-R, Lăovgren T 1979 Influence of glucose on the α-glucoside permease activity of yeast Eur J Appl Microbiol 7: 59–66 Slaughter JC, Jordan B 1986 The production of hydrogen sulphide by yeast In: I Campbell, FG Priest (eds.) Proceedings of the Second Aviemore Conference on Malting, Brewing and Distilling Institute of Brewing, London, pp 308–310 Smit A et al 2008 The Thr505 and Ser557 residues of the AGT1encoded alpha-glucoside transporter are critical for maltotriose P1: SFK/UKS BLBS102-c33 P2: SFK BLBS102-Simpson 652 March 21, 2012 14:5 Trim: 276mm X 219mm Printer Name: Yet to Come Part 5: Fruits, Vegetables, and Cereals transport in Saccharomyces cerevisiae J Appl Microbiol 104: 1103–1111 Smith AU et al 1998 Yeast PKA represses Msn2p/Msn4pdependent gene expression to regulate growth, stress response and glycogen accumulation EMBO J 17: 3556–3564 Smogrovicov´a D, Dăomeny Z 1999 Beer volatile by-product formation at different fermentation temperature using immobilized yeasts Process Biochem 34: 785–794 Smogrovicov´a D et al 1997 Reactors for the continuous primary beer fermentation using immobilised yeast Biotechnol Tech 11: 261–264 Smogrovicov´a D et al 2001 Continuous beer fermentation using polyvinyl alcohol entrapped yeast Proceedings of the European Brewery Convention Congress, Budapest, pp 1–9 Soler AP et al 1987 Differential translational efficiency of the mRNA isolated from derepressed and glucose repressed Saccharomyces cerevisiae J Gen Microbiol 133: 1471–1480 Staab JF et al 1999 Adhesive and mammalian transglutaminase substrate properties of Candida albicans Hwp1 Science 283: 1535–1583 Stambuk BU, de Araujo PS 2001 Kinetics of active alpha-glucoside transport in Saccharomyces cerevisiae FEMS Yeast Res 1: 73–78 Stewart GG, Russell I 1993 Fermentation—the “black box” of the brewing process MBAA Tech Quart 30: 159–168 Stratford M 1989 Yeast flocculation: calcium specificity Yeast 5: 487–496 Suihko M et al 1990 Recombinant brewer’s yeast strains suitable for accelerated brewing J Biotechnol 14: 285–300 Szlavko CM 1973 Tryptophol, tyrosol and phenylethanol—the aromatic higher alcohols in beer J Inst Brew 83: 283–243 Tada S et al 1995 Pilot scale brewing with industrial yeasts which produce the α-acetolactate decarboxylase of Acetobacter aceti ssp xylium Proceedings of the European Brewery Convention Congress, Brussels, pp 369–376 Tata M et al 1999 Immobilized yeast bioreactor systems for continuous beer fermentation Biotechnol Prog 15: 105–113 Teunissen AW et al 1993a Sequence of the open reading frame of the FLO1 gene from Saccharomyces cerevisiae Yeast 9: 423– 427 Teunissen AW et al 1993b Physical localization of the flocculation gene FLO1 on chromosome I of Saccharomyces cerevisiae Yeast 9: 1–10 Teunissen AW, Steensma HY 1995 Review: the dominant flocculation genes of Saccharomyces cerevisiae constitute a new subtelomeric gene family Yeast 11: 1001–1013 Tezuka H et al 1992 Cloning of a gene suppressing hydrogen sulphide production by Saccharomyces cerevisiae and its expression in a brewing yeast J Am Soc Brew Chem 50: 130–133 Thomas D, Surdin-Kerjan Y 1997 Metabolism of sulfur amino acids in Saccharomyces cerevisiae Microbiol Mol Biol Rev 61: 503–532 Thorne RSW 1968 Continuous fermentation in retrospect Brew Digest 43(2): 50–55 Thurston PA et al 1981 Effects of linoleic acid supplements on the synthesis by yeast of lipid and acetate esters J Inst Brew 87: 92–95 Thurston PA et al 1982 Lipid metabolism and the regulation of volatile synthesis in Saccharomyces cerevisiae J Inst Brew 88: 90–94 Udenfriend S, Kodukula K 1995 How glycosylphosphatidylinositol-anchored membrane proteins are made Annu Rev Biochem 64: 563–591 Unemoto S et al 1998 Primary fermentation with immobilized yeast in a fluidized bed reactor MBAA Tech Quart 35: 58–61 Vanbeneden N et al 2007 Formation of 4-vinyl and 4-ethyl derivatives from hydroxycinnamic acids: occurrence of volatile phenolic flavour compounds in beer and distribution of Pad1-activity among brewing yeasts Food Chem 107: 221–230 Van de Meersche J et al 1977 The role of yeasts in the maturation of beer flavour Proceedings of the European Brewery Convention Congress, Amsterdam, pp 561–575 Van Den Berg R et al 1983 Diacetyl reducing activity in brewer’s yeast Proceedings of the European Brewery Convention Congress, London, pp 497–504 Van De Winkel L 1995 Design and optimization of a multipurpose immobilized yeast bioreactor system for brewery fermentations Cerevisia 20(1): 77–80 Van De Winkel L et al 1991 The application of an immobilized yeast loop reactor to the continuous production of alcoholfree beer Proceedings of the European Brewery Convention Congress, Lisbon, pp 307–314 Van Dieren D 1995 Yeast metabolism and the production of alcohol-free beer EBC Monograph XXIV, EBC Symposium on Immobilized Yeast Applications in the Brewing Industry, Espoo, pp 66–76 Van Haecht JL, Dufour JP 1995 The production of sulfur compounds by brewing yeast: a review Cerevisiae 20: 51–64 van Iersel MFM et al 1998 Effect of environmental conditions on flocculation and immobilization of brewer’s yeast during production of alcohol-free beer J Inst Brew 104: 131–136 Van Mulders SE et al 2009 Phenotypic diversity of Flo protein family-mediated adhesion in Saccharomyces cerevisiae FEMS Yeast Res 9: 178–190 Verbelen PJ et al 2006 Immobilized yeast cell systems for continuous fermentation applications Biotechnol Lett 28: 1515–1525 Verbelen PJ et al 2009 The influence of yeast oxygenation prior to brewery fermentation on yeast metabolism and the oxidative stress response FEMS Yeast Res 9: 226–239 Verbelen PJ et al 2010 Bioprocess intensification of beer fermentation using immobilised cells In: NJ Zuidam, VA Nedovic (eds.) Encapsulation Technologies for Active Food Ingredients and Food Processing Springer, New York, pp 303–325 Verstrepen KJ 2003 Flavour-active ester synthesis in Saccharomyces cerevisiae PhD thesis, Katholieke Universiteit Leuven, Belgium Verstrepen KJ et al 2003a Yeast flocculation: what brewers should know Appl Microbiol Biotechnol 61: 197–205 Verstrepen KJ et al 2003b Flavor-active esters: adding fruitiness to beer J Biosci Bioeng 96: 110–118 Verstrepen KJ et al 2003 Expression levels of the yeast alcohol acetyltransferase genes ATF1, Lg-ATF1, and ATF2 control the formation of a broad range of volatile esters Appl Environ Microbiol 69: 5228–5237 Verstrepen KJ et al 2004 Origins of variation in the fungal cell surface Nat Rev Microbiol 2: 533–540 Vidgren V et al 2005 Characterization and functional analysis of the MAL and MPH Loci for maltose utilization in some ale and lager yeast strains Appl Environ Microbiol 71: 7846–7857 ... performance and diacetyl MBAA Tech Quart 34: 185 – 189 Quain DE 1 988 Studies on yeast physiology: impact of fermentation performance and product quality J Inst Brew 95: 315–323 Quain DE, Tubb RS 1 982 The... Convention Congress, Maastricht, pp 385 –394 Linko M et al 19 98 Recent advances in the malting and brewing industry J Biotechnol 65: 85 – 98 Lo WS, Dranginis AM 19 98 The cell surface flocculin Flo11... pp 96– 98 Rosculet G 1971 Aroma and flavour of beer Part II: the origin and nature of less-volatile and non-volatile components of beer Brew Digest 46(6): 96– 98 Rostgaard-Jensen B et al 1 987 Isolation