Liu W, Zhu WM (2000) Production and regeneration of Trichosporon cutaneum protoplasts.
Process Biochem 35:659–664
Liu J, Yuan X, Zeng G, Shi J, Chen S (2006) Effect of biosurfactants on cellulase and xylanase
production by Trichoderma viride in solid substrate fermentation. Process Biochem 41
(11):2347–2351
Lynd LR, Laser MS, Bransby D, Dale BE, Davison B, Hamilton R, Himmel M, Keller M,
McMillan JD, Sheehan J, Wyman CE (2008) How biotech can transform biofuels. Nat
Biotechnol 26:169–172
Macris BJ (1984) Enhanced cellulases and β-glucosidases production by a mutant of Aspergillus
alternate. Biotechnol Bioeng 26:194–196
Macris BJ (1986) Enhanced cellobiohydrolase production from Aspergillus ustus and Trichoderma
harzianum. Enzym Microb Technol 68(3):141–144
Maeda RN, Serpa VI, Rocha VA, Mesquita RAA, Santa Anna IMM, Castro AM, Driemeier DE,
Pereira N, Polikarpov I (2011) Enzymatic hydrolysis of pretreated sugar cane bagasse using
Penicillium funiculosum and Trichoderma harzianum cellulases. Process Biochem 46
(5):1196–1201
Mandels M (1975) Microbial source of cellulase. Biotechnol Bioeng 5:81–105
Massadeh MI, Yusoff WMW, Omar O, Kader J (2001) Synergism of cellulase enzymes in mixed
culture solid substrate fermentation. Biotechnol Lett 23:1771–1774
Micales JA (1991) Increased recovery of β-D-glucosidase from Postia placenta in presence of
tween surfactants. Special print from: material and organisms 26. Heft Verlag Duncker and
Humblot, 1000 Berlin, p.41. Microbiol Rev 13(1):25–58
Milala MA, Shugaba A, Gidado A, Ene AC, Wafar JA (2005) Studies on the use of agricultural
wastes for cellulase enzyme production by Aspergillus niger. Res J Agric Biol Sci 1(4):325–328
Milala MA, Shehu BB, Zanna H, Omosioda VO (2009) Degradation of agro-waste by cellulase
from Aspergillus candidus. Asian J Biotechnol 1(2):51–56
Murao S, Sakamoto R, Arai M (1988) Cellulases of Aspergillus aculeatus. Methods Enzymol
160:274–299
Mussatto I, Fernandes M, Ines Roberto C (2007) Lignin recovery from brewer’s spent grain black
liquor Solange. Carbohydr Poly 70(2):218–223
Mussatto S, Fernandes M, Milagres A, Roberto I (2008) Effect of hemicellulose and lignin on
enzymatic hydrolysis of cellulose from brewer’s spent grain. Enzym Microb Technol 43:124–
129
Muthuvelayudham R, Viruthagiri T, Deiveegan S (2004) Enhanced cellulase production using
mutant strain Trichoderma reesei growing on lactose in batch culture. CHEMCON, Ind Chem
Engr Congress, pp 15–18
Narasimha G, Sridevi A, Viswanath B, Subhosh Chandra M, Rajasekhar Reddy B (2006) Nutrient
effects on production of cellulolytic enzymes by Aspergillus niger. Afr J Biotechnol 5
(5):472–476
Nasab MM, Nasab MM (2007) Cellulase Production by Trichoderma reesei using sugar Beet Pulp.
Iran Agric Res 25(1–2):107–116
Nathan VK, Rani ME, Rathinasamy G, Dhiraviam KN, Jayavel S (2014) Process optimization and
production kinetics for cellulase production by Trichoderma viride KF3. Springer Plus 3:92
Nipa MN, Sultana S, Hakim MA (2006) Induction of cellulase biosynthesis by cellobiose
octaacetate in Aspergillus humicola. Banglad J Microbiol 23(2):174–176
Nutor JRK, Converse AO (1991) The effect of enzyme and substrate levels on the specific
hydrolysis rate of pretreated poplar wood. Appl Biochem Biotechnol 28:757
Ojumu TV, Solomon BO, Betiku E, Layokun SK, Amigun B (2003) Cellulase production by
Aspergillus flavus Linn isolate NSPR 101 fermented in saw dust, bagasse and cornconb. Afr J
Biotechnol 2(6):150–152
Okino S, Ikeo M, Ueno Y, Taneda D (2013) Effects of Tween-80 on cellulase stability under
agitated conditions. Bioresour Technol 142:535–539
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