Chandra MA, Karala PK, Sharma SRS (2009) Cellulase production by six Trichoderma spp.
fermented on medicinal plant processings. J Ind Microbiol Biotechnol 36(4):605–609
Chandra MS, Viswanath B, Reddy BR (2010) Optimization of extraction of β-endoglucanase from
the fermented bran of Aspergillus niger. Ind J Microbiol 50:S122–S126
Chen H (2013) Modern solid state fermentation: theory and practice. Springer, Berlin
Chysirichote T (2018) Cellulase production by Aspergillus niger ATCC 16888 on copra waste from
coconut Milk process in layered packed-bed bioreactor. Chem Biochem Eng Q 32(2):267–274
Damisa D, Ameh JB, Egbe NEL (2011) Cellulase production by native Aspergillus niger obtained
from soil environments. Ferment Technol Bioeng 1:62–70
Das M, Banerjee R, Bal S (2008) Multivariable parameter optimization for the endoglucanase
production by Trichoderma reesei rut C30 from Ocimum gratissimum seed. Braz Arch Biol
Technol 51(1):35–41
De Vries RP, De Visser J (2001) Aspergillus enzymes involved in degradation of plant cell wall
polysaccharides. Microbiol Mol Biol Rev 65(4):497–522
Deswal D, Khasa YP, Kuhad RC (2011) Optimization of cellulase production by a brown rot fungus
Fomitopsis sp. RCK2010 under solid state fermentation. Bioresour Technol 102
(10):6065–6072
Dorland Newman WA (2003) Dorland’s illustrated medical dictionary, 30th edn. WB Saunders,
New York, p 2140
Ellaiah P, Srinivasulu B, Adinarayana K (2004) Optimization studies on neomycin production by a
mutant strain of Streptomyces marinensis in solid state fermentation. Process Biochem 39
(5):529–534
Elsa C, Kumar MD, Baskar G (2015) Optimized production of cellulase using fruit waste and its
application in bioethanol production. Int J Pharm Bio Sci 6(2):1005–1013
Fadel M, Kahil T, Abdel-Aziz SM (2013) Farm scaling up biological treatment by solid state
fermentation to invest rice straw as a livestock feed in Egypt. J Basic Appl Sci Res 3
(12):258–263
Faisal PA, Benjamin S (2016) Optimization of parameters for the production of Cellulase from
Achromobacter xylosoxidans BSS4 by solid-state fermentation. Electron J Biol 12:4
Francis SI, Augustine OO, Victor E (2018) Production and optimization of Cellulase from Penicillium sp. using corn-cob and pawpaw fibre as substrates. J Adv Microbiol 8(2):1–10
Gao J, Weng H, Zhu D, Yuan M, Guan F, Xi Y (2008) Production and characterization of
cellulolytic enzymes from the thermoacidophilic fungal Aspergillus terreus M11 under solid
state cultivation of corn Stover. Bioresour Technol 99(16):7623–7629
Gavrilescu M (2004) Cleaner production as a tool for sustainable development. Environ Eng Manag
J 3(1):45–70
Gavrilescu M, Nicu M (2004) Source reduction and waste minimization. Ecozone Press, Iasi
Guruchandran V, Sasikumar C (2010) Cellulase production by Aspergillus niger fermented in
sawdust and bagasse. J Cell Tissue Res 10(1):2115–2117
Harmanpreet M, Jana AK, Jana MM (2016) Effect of particle size, moisture content, and supplements on selective pretreatment of cotton stalks by Daedalea flavida and enzymatic saccharification. 3 Biotech 6(235):1–13
Hassan HM, Abeer A, Keera, Fadel M (2016) High-yield cellulases and xylanase production from
sugarcane bagasse pith by Aspergillus oryzae FK-923 cultivated under solid state fermentation.
Iner J Curr Res Acad Rev 4(1):1–13
Hayashida S, Mok HA (1988) Production of characteristics of avicel digesting and non-avicel
digesting cellobiohydrolases from Aspergillus ficuum. Appl Environ Microbiol 54
(6):1523–1529
Henrissat B, Driguez H, Viet C, Schulein M (1985) Synergism of cellulases from Trichoderma
reesei in the degradation of cellulose. Nature Biotech 3(8):722–726
Herculano PN, Porto TS, Moreira KA, Pinto GA, Souza-Motta CM, Porto ALF (2011) Cellulase
production by Aspergillus japonicus URM5620 using waste from castor bean
(Ricinuscommunis L.) under solid state fermentation. Appl Biochem Biotechnol 165
(3–4):1057–1067
88
M. Subhosh Chandra et al.
fermented on medicinal plant processings. J Ind Microbiol Biotechnol 36(4):605–609
Chandra MS, Viswanath B, Reddy BR (2010) Optimization of extraction of β-endoglucanase from
the fermented bran of Aspergillus niger. Ind J Microbiol 50:S122–S126
Chen H (2013) Modern solid state fermentation: theory and practice. Springer, Berlin
Chysirichote T (2018) Cellulase production by Aspergillus niger ATCC 16888 on copra waste from
coconut Milk process in layered packed-bed bioreactor. Chem Biochem Eng Q 32(2):267–274
Damisa D, Ameh JB, Egbe NEL (2011) Cellulase production by native Aspergillus niger obtained
from soil environments. Ferment Technol Bioeng 1:62–70
Das M, Banerjee R, Bal S (2008) Multivariable parameter optimization for the endoglucanase
production by Trichoderma reesei rut C30 from Ocimum gratissimum seed. Braz Arch Biol
Technol 51(1):35–41
De Vries RP, De Visser J (2001) Aspergillus enzymes involved in degradation of plant cell wall
polysaccharides. Microbiol Mol Biol Rev 65(4):497–522
Deswal D, Khasa YP, Kuhad RC (2011) Optimization of cellulase production by a brown rot fungus
Fomitopsis sp. RCK2010 under solid state fermentation. Bioresour Technol 102
(10):6065–6072
Dorland Newman WA (2003) Dorland’s illustrated medical dictionary, 30th edn. WB Saunders,
New York, p 2140
Ellaiah P, Srinivasulu B, Adinarayana K (2004) Optimization studies on neomycin production by a
mutant strain of Streptomyces marinensis in solid state fermentation. Process Biochem 39
(5):529–534
Elsa C, Kumar MD, Baskar G (2015) Optimized production of cellulase using fruit waste and its
application in bioethanol production. Int J Pharm Bio Sci 6(2):1005–1013
Fadel M, Kahil T, Abdel-Aziz SM (2013) Farm scaling up biological treatment by solid state
fermentation to invest rice straw as a livestock feed in Egypt. J Basic Appl Sci Res 3
(12):258–263
Faisal PA, Benjamin S (2016) Optimization of parameters for the production of Cellulase from
Achromobacter xylosoxidans BSS4 by solid-state fermentation. Electron J Biol 12:4
Francis SI, Augustine OO, Victor E (2018) Production and optimization of Cellulase from Penicillium sp. using corn-cob and pawpaw fibre as substrates. J Adv Microbiol 8(2):1–10
Gao J, Weng H, Zhu D, Yuan M, Guan F, Xi Y (2008) Production and characterization of
cellulolytic enzymes from the thermoacidophilic fungal Aspergillus terreus M11 under solid
state cultivation of corn Stover. Bioresour Technol 99(16):7623–7629
Gavrilescu M (2004) Cleaner production as a tool for sustainable development. Environ Eng Manag
J 3(1):45–70
Gavrilescu M, Nicu M (2004) Source reduction and waste minimization. Ecozone Press, Iasi
Guruchandran V, Sasikumar C (2010) Cellulase production by Aspergillus niger fermented in
sawdust and bagasse. J Cell Tissue Res 10(1):2115–2117
Harmanpreet M, Jana AK, Jana MM (2016) Effect of particle size, moisture content, and supplements on selective pretreatment of cotton stalks by Daedalea flavida and enzymatic saccharification. 3 Biotech 6(235):1–13
Hassan HM, Abeer A, Keera, Fadel M (2016) High-yield cellulases and xylanase production from
sugarcane bagasse pith by Aspergillus oryzae FK-923 cultivated under solid state fermentation.
Iner J Curr Res Acad Rev 4(1):1–13
Hayashida S, Mok HA (1988) Production of characteristics of avicel digesting and non-avicel
digesting cellobiohydrolases from Aspergillus ficuum. Appl Environ Microbiol 54
(6):1523–1529
Henrissat B, Driguez H, Viet C, Schulein M (1985) Synergism of cellulases from Trichoderma
reesei in the degradation of cellulose. Nature Biotech 3(8):722–726
Herculano PN, Porto TS, Moreira KA, Pinto GA, Souza-Motta CM, Porto ALF (2011) Cellulase
production by Aspergillus japonicus URM5620 using waste from castor bean
(Ricinuscommunis L.) under solid state fermentation. Appl Biochem Biotechnol 165
(3–4):1057–1067
88
M. Subhosh Chandra et al.
