Mazumdar KC, Suryanarayan S (1999) Solid state fermentation. EP1131404 B1
McDaniel A, Fuchs E, Liu Y, Ford C (2008) Directed evolution of Aspergillus niger glucoamylase
to increase thermostability. Microb Biotechnol 1:523–531
Montiel-González AM, Fernández FJ, Viniegra-González G, Loera O (2002) Invertase production
on solid-state fermentation by Aspergillus niger strains improved by parasexual recombination.
Appl Biochem Biotechnol 102:63–70
Murado MA, Pastrana L, Vázquez JA, Mirón J, González MP (2008) Alcoholic chestnut
fermentation in mixed culture. Compatibility criteria between Aspergillus oryzae and
Saccharomyces cerevisiae strains. Bioresour Technol 99:7255–7263
Nagy V, Toke ER, Keong LC, Szatzker G, Ibrahim D, Omar IC, Szakacs G, Poppe L (2006)
Kinetic resolutions with novel, highly enantioselective fungal lipases produced by solid state
fermentation. J Mol Catal B-Enzym 39:141–148
Nopharatana M, Mitchell DA, Howes T (2003) Use of confocal scanning laser microscopy to
measure the concentrations of aerial and penetrative hyphae during growth of Rhizopus
oligosporus on a solid surface. Biotechnol Bioeng 84:71–77
Oostra J, le Comte EP, van den Heuvel JC, Tramper J, Rinzema A (2001) Intra-particle oxygen
diffusion limitation in solid-state fermentation. Biotechnol Bioeng 75:13–24
Ortega-Sánchez E, Loera O, Viniegra-González G (2012) The effect of the ratio between substrate
concentration and specific area of the support on the biomass yield of fungal surface cultures.
Rev Mex Ing Quim 11:485–494
Pandey A, Selvakumar P, Soccol CR, Nigam P (1999) Solid state fermentation for the production
of industrial enzymes. Curr Sci 77:149–162
Parekh S, Vinci VA, Strobel RJ (2000) Improvement of microbial strains and fermentation
processes. Appl Microbiol Biotechnol 54:287–301
Pirt SJ (1966) A theory of the mode of growth of fungi in the form of pellets in submerged culture.
Proc R Soc Lond B 166:369–373
Pirt SJ (1967) A kinetic study of the mode of growth of surface colonies of bacteria and fungi.
J Gen Microbiol 47:181–197
Price ND, Papin JA, Schilling CH, Palsson BO (2003) Genome-scale microbial in silico models
the constraints-based approach. Trends Biotechnol 21:162–169
Rahardjo YSP, Weber FJ, le Comte EP, Tramper J, Rinzema A (2002) Contribution of aerial
hyphae of Aspergillus oryzae to respiration in a model solid-state fermentation system.
Biotechnol Bioeng 78:539–544
Rajoka MI (2005) Double mutants of Cellulomonas biazotea for production of cellulases and
hemicellulases following growth on straw of a perennial grass. World J Microbiol Biotechnol
21:1063–1066
Rajoka MI, Khan S (2005) Hyper-production of a thermotolerant beta-xylosidase by a deoxy-Dglucose and cycloheximide resistant mutant derivative of Kluyveromyces marxianus PPY 125.
Electron J Biotechnol 8:177–184
Rajoka MI, Yasmeen A (2005) Improved productivity of beta-fructofuranosidase by a derepressed
mutant of Aspergillus niger from conventional and non-conventional substrates. World J
Microbiol Biotechnol 21:471–478
Rathbun BL, Shuler ML (1983) Heat and mass-transfer effects in static solid-substrate
fermentations—design of fermentation chambers. Biotech Bioeng 25:929–938
Ridder ER, Nokes SE, Knutson BL (1998) Optimization of solid-state fermentation parameters for
the production of xylanase by Trichoderma longibrachiatum on wheat bran. Transactions of the
ASAE 41:1453–1459
Rigo E, Rigoni RE, Lodea P, Oliveira D, Freire DMG, Teichel H, Dillucio M (2008) Comparison
of two lipases in the hydrolysis of oil and grease in wastewater of the swine meat industry. Ind
Eng Chem Res 47:1760–1765
Rodríguez JA, Mateos JC, Nungaray J, González V, Bhagnagar T, Roussos S, Córdova J, Baratti J
(2006) Improving lipase production by nutrient source modification using Rhizopus
homothallicus cultured in solid state fermentation. Process Biochem 41:2264–2269
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