Omojasola PF, Jilani OP, Ibiyemi SA (2008) Cellulase production by some fungi cultured on
pineapple waste. Nat Sci 6(2):64–79
Othman MF, Kalil MS, Sahri MM (2013) Solid State fermentation of Palm Kernel Cake (Pkc) by
newly isolated Rhizopus oryzae Me01. Asian J Exp Biol Sci 4(1):84–88
Ozioko PC, Ikeyi AP, Ugwu OPC (2013) Cellulases, their substrates, activity and assay methods.
The Experiment 12:778–785
Padmavathi T, Nandy V, Agarwal P (2012) Optimization of the medium for the production of
cellulases by Aspergillus terreus and Mucor plumbeu. Eur J Exp Biol 2(4):1161–1170
Panda T, Bisaria VS, Ghose TK (1987) Effect of culture phasing and a polysaccharide on
production of xylanase by mixed culture of Trichoderma reesei D1-6 and Aspergillus wentii
Pt 2804. Biotechnol Bioeng 30(7):868–874
Pandey A (2003) Solid-state fermentation. Biochem Eng J 13:81–84
Papagianni M (1995) Morphology and citric acid production of Aspergillus niger in submerged
culture. PhD thesis, University of Strathclyde
Papagianni M (2004) Fungal morphology and metabolite production in submerged mycelial
processes. Biotechnol Adv 22(3):189–259
Park EY, Naruse K, Kato T (2011) Improvement of cellulase production in cultures of Acremonium
cellulolyticus using pretreated waste milk pack with cellulase targeting for biorefinery.
Bioresour Technol 102(10):6120–6127
Polyanna NH, Porto TS, Moreira KA, Pinto GAS, Cristina MSM, Ana LFP (2011) Cellulase
production by Aspergillus japonicus URM5620 using waste from castor bean (Ricinus
communis L.) under solid state fermentation. Appl Biochem Biotechnol 165:1057–1067
Portjanskaja E, Preis S, Kallas J (2006) Aqueous photocatalytic oxidation of lignin and humic acids
with supported TiO2. Int J Photoene 8:1–7
Prasanna HN, Ramanjaneyulu G, Rajasekhar Reddy B (2016) Optimization of cellulase production
by Penicillium sp. 3. Biotech 6(2):162
Praveen Kumar Reddy G, Narasimha G, Kanderi Dileep Kumar G, Ramanjaneyulu A, Ramya B,
Shanti Kumari S, Rajasekhar Reddy B (2015) Cellulase production by Aspergillus niger on
different natural lignocellulosic substrates. Int J Curr Microbiol Appl Sci 4(4):835–845
Purwadaria T, Agnes Kumalasari T, Tutiharyati, Pius Ketaren P, Arnold Sinurat P (2004) Optimization of cellulase production with Penicillium nalgiovense all grown on pretreated wheat
pollard. Biotropia 23:1–12
Qi BC, Aldrich C, Lorenzen L, Wolfaardt GW (2005) Acidogenic fermentation of lignocellulosic
substrate with activated sludge. Chem Eng Commun 192(9):1221–1242
Qin C, Zhou B, Zeng L, Zhang Z, Liu Y et al (2004) The physicochemical properties and antitumor
activity of cellulase-treated chitosan. Food Chem 1:107–115
Rajagopalan G, Krishnan C (2008) α-Amylase production from catabolite depressed Bacillus
subtilis KCC103 utilizing sugarcane bagasse hydrolysate. Bioresour Technol 99(8):3044–3050
Rashid SS, Alam MZ, Karim MIA, Sallah MH (2009) Optimization of the nutrient supplements for
cellulose production with the basal medium palm oil mill effluent. World Acad Sci Eng Technol
60:809–815F
Riaz H, Jabbar A, Rashid MH, Riaz S, Latif F (2014) Endoglucanase production by Humicola
insolens: effect of physiochemical factors on growth kinetics and thermodynamics. Int J Agric
Biol 16:1141–1146
Robinson T, Singh D, Nigam P (2001) Solid-state fermentation: a promising microbial technology
for secondary metabolite production. Appl Microbiol Biotechnol 55:284–289
Sachslehner A, Nidetzky B, Kulbe KD, Haltrich D (1998) Induction of Mannanase, Xylanase, and
Endoglucanase activities in Sclerotium rolfsii. Appl Environ Microbiol 64(2):594–600
Sajith S, Priji P, Sreedevi S, Benjamin S (2016) An overview on fungal cellulases with an industrial
perspective. J Nutr Food Sci 6(13):1–13
Sanyal A, Kanda RK, Sinha SN, Dube DK (1988) Extracellular cellulolytic enzyme system of
Aspergillus japonicus. ibid 10(2):85–90
11 Significance of Process Parameters on Fungal Cellulase Production
321
pineapple waste. Nat Sci 6(2):64–79
Othman MF, Kalil MS, Sahri MM (2013) Solid State fermentation of Palm Kernel Cake (Pkc) by
newly isolated Rhizopus oryzae Me01. Asian J Exp Biol Sci 4(1):84–88
Ozioko PC, Ikeyi AP, Ugwu OPC (2013) Cellulases, their substrates, activity and assay methods.
The Experiment 12:778–785
Padmavathi T, Nandy V, Agarwal P (2012) Optimization of the medium for the production of
cellulases by Aspergillus terreus and Mucor plumbeu. Eur J Exp Biol 2(4):1161–1170
Panda T, Bisaria VS, Ghose TK (1987) Effect of culture phasing and a polysaccharide on
production of xylanase by mixed culture of Trichoderma reesei D1-6 and Aspergillus wentii
Pt 2804. Biotechnol Bioeng 30(7):868–874
Pandey A (2003) Solid-state fermentation. Biochem Eng J 13:81–84
Papagianni M (1995) Morphology and citric acid production of Aspergillus niger in submerged
culture. PhD thesis, University of Strathclyde
Papagianni M (2004) Fungal morphology and metabolite production in submerged mycelial
processes. Biotechnol Adv 22(3):189–259
Park EY, Naruse K, Kato T (2011) Improvement of cellulase production in cultures of Acremonium
cellulolyticus using pretreated waste milk pack with cellulase targeting for biorefinery.
Bioresour Technol 102(10):6120–6127
Polyanna NH, Porto TS, Moreira KA, Pinto GAS, Cristina MSM, Ana LFP (2011) Cellulase
production by Aspergillus japonicus URM5620 using waste from castor bean (Ricinus
communis L.) under solid state fermentation. Appl Biochem Biotechnol 165:1057–1067
Portjanskaja E, Preis S, Kallas J (2006) Aqueous photocatalytic oxidation of lignin and humic acids
with supported TiO2. Int J Photoene 8:1–7
Prasanna HN, Ramanjaneyulu G, Rajasekhar Reddy B (2016) Optimization of cellulase production
by Penicillium sp. 3. Biotech 6(2):162
Praveen Kumar Reddy G, Narasimha G, Kanderi Dileep Kumar G, Ramanjaneyulu A, Ramya B,
Shanti Kumari S, Rajasekhar Reddy B (2015) Cellulase production by Aspergillus niger on
different natural lignocellulosic substrates. Int J Curr Microbiol Appl Sci 4(4):835–845
Purwadaria T, Agnes Kumalasari T, Tutiharyati, Pius Ketaren P, Arnold Sinurat P (2004) Optimization of cellulase production with Penicillium nalgiovense all grown on pretreated wheat
pollard. Biotropia 23:1–12
Qi BC, Aldrich C, Lorenzen L, Wolfaardt GW (2005) Acidogenic fermentation of lignocellulosic
substrate with activated sludge. Chem Eng Commun 192(9):1221–1242
Qin C, Zhou B, Zeng L, Zhang Z, Liu Y et al (2004) The physicochemical properties and antitumor
activity of cellulase-treated chitosan. Food Chem 1:107–115
Rajagopalan G, Krishnan C (2008) α-Amylase production from catabolite depressed Bacillus
subtilis KCC103 utilizing sugarcane bagasse hydrolysate. Bioresour Technol 99(8):3044–3050
Rashid SS, Alam MZ, Karim MIA, Sallah MH (2009) Optimization of the nutrient supplements for
cellulose production with the basal medium palm oil mill effluent. World Acad Sci Eng Technol
60:809–815F
Riaz H, Jabbar A, Rashid MH, Riaz S, Latif F (2014) Endoglucanase production by Humicola
insolens: effect of physiochemical factors on growth kinetics and thermodynamics. Int J Agric
Biol 16:1141–1146
Robinson T, Singh D, Nigam P (2001) Solid-state fermentation: a promising microbial technology
for secondary metabolite production. Appl Microbiol Biotechnol 55:284–289
Sachslehner A, Nidetzky B, Kulbe KD, Haltrich D (1998) Induction of Mannanase, Xylanase, and
Endoglucanase activities in Sclerotium rolfsii. Appl Environ Microbiol 64(2):594–600
Sajith S, Priji P, Sreedevi S, Benjamin S (2016) An overview on fungal cellulases with an industrial
perspective. J Nutr Food Sci 6(13):1–13
Sanyal A, Kanda RK, Sinha SN, Dube DK (1988) Extracellular cellulolytic enzyme system of
Aspergillus japonicus. ibid 10(2):85–90
11 Significance of Process Parameters on Fungal Cellulase Production
321
