Doi RH, Kosugi A (2004) Cellulosomes: plant-cell-wall-degrading enzyme complexes. Nat Rev
Microbiol 2(7):541–551
Dourado F, Bastos M, Mota M, Gama FM (2002) Studies on the properties of Celluclast/Eudragit
L-100 conjugate. J Biotechnol 99(2):121–131
Escobar MO, Hue NV (2008) Temporal changes of selected chemical properties in three manure–
Amended soils of Hawaii. Bioresour Technol 99(18):8649–8654
Fantozzi P, Petruccioli G, Montedoro G (1977) Trattamenti con additivi enzimatici alle paste di
oliva sottoposte ad estrazione per pressione unica: influenze delle cultivars, dell’epoca di
raccolta e della conservazione. Grasse 54:381–388
Fontaine S, Bardoux G, Benest D, Verdier B, Mariotti A, Abbadie L (2004) Mechanisms of the
priming effect in a savannah soil amended with cellulose. Soil Sci Soc Am J 68(1):125–131
Fortun-Lamothe L, Gidenne T, Debray L, Chalaye F. (2001). Intake regulation, performances and
health status according to feeding strategy around weaning. In Proceendings of the 2nd Meeting
of COST (Vol. 848, pp. 40–41).
Galante YM, DeConti A, Monteverdi R (1998) Application of trichoderma enzymes in food and
feed industries. In: Harman GF, Kubicek CP (eds) Trichoderma and gliocladium—enzymes,
vol. 2 of Biological control and commercial applications. Taylor & Francis, London, pp
311–326
Ghosh P, Singh A (1993) Physicochemical and biological treatments for enzymatic/microbial
conversion of lignocellulosic biomass. In: Advances in applied microbiology, vol 39. Academic
Press, New York, pp 295–333
Godfrey T, West S (1996) Textiles. Indus Enzymol:360–371
Graham H, Balnave D (1995) Dietary enzymes for increasing energy availability. In: Wallace RJ,
Chesson A (eds) Biotechnology in animal feeds and animal feedings. VHC, Weinheim, pp
296–309
Gupta R, Khasa YP, Kuhad RC (2011) Evaluation of pretreatment methods in improving the
enzymatic saccharification of cellulosic materials. Carbohydr Polym 84(3):1103–1109
Han W, He M (2010) The application of exogenous cellulase to improve soil fertility and plant
growth due to acceleration of straw decomposition. Bioresour Technol 101(10):3724–3731
Harrison MJ, Nouwens AS, Jardine DR, Zachara NE, Gooley AA, Nevalainen H, Packer NH
(1998) Modified glycosylation of cellobiohydrolase I from a high cellulase-producing mutant
strain of Trichoderma reesei. Eur J Biochem 256(1):119–127
Headon DR, Walsh G (1994) The industrial production of enzymes. Biotechnol Adv 12(4):635–646
Hebeish A, Ibrahim NA (2007) The impact of frontier sciences on textile industry. Colourage 54
(4):41–55
Henrissat B, Davies G (1997) Structural and sequence-based classification of glycoside hydrolases.
Curr Opin Struct Biol 7(5):637–644
Huang W, Niu H, Li Z, He Y, Gong W, Gong G (2008) Optimization of ellagic acid production
from ellagitannins by co-culture and correlation between its yield and activities of relevant
enzymes. Bioresour Technol 99(4):769–775
Ibrahim NA, El-Badry K, Eid BM, Hassan TM (2011) A new approach for biofinishing of cellulosecontaining fabrics using acid cellulases. Carbohydr Polym 83(1):116–121
Juturu V, Wu JC (2014) Microbial cellulases: engineering, production and applications. Renew Sust
Energ Rev 33:188–203
Kanmani R, Vijayabaskar P, Jayalakshmi S (2011) Saccharification of banana-agro waste and
clarification of apple juice by cellulase enzyme produced from Bacillus pumilis. World Appl Sci
J 12(11):2120–2128
Karmakar M, Ray RR (2011) Current trends in research and application of microbial cellulases. Res
J Microbiol 6(1):41
Kotaka A, Bando H, Kaya M, Kato-Murai M, Kuroda K, Sahara H et al (2008) Direct ethanol
production from barley β-glucan by sake yeast displaying Aspergillus oryzae β-glucosidase and
endoglucanase. J Biosci Bioeng 105(6):622–627
296
M. S. H. K. Tushar and A. Dutta
Microbiol 2(7):541–551
Dourado F, Bastos M, Mota M, Gama FM (2002) Studies on the properties of Celluclast/Eudragit
L-100 conjugate. J Biotechnol 99(2):121–131
Escobar MO, Hue NV (2008) Temporal changes of selected chemical properties in three manure–
Amended soils of Hawaii. Bioresour Technol 99(18):8649–8654
Fantozzi P, Petruccioli G, Montedoro G (1977) Trattamenti con additivi enzimatici alle paste di
oliva sottoposte ad estrazione per pressione unica: influenze delle cultivars, dell’epoca di
raccolta e della conservazione. Grasse 54:381–388
Fontaine S, Bardoux G, Benest D, Verdier B, Mariotti A, Abbadie L (2004) Mechanisms of the
priming effect in a savannah soil amended with cellulose. Soil Sci Soc Am J 68(1):125–131
Fortun-Lamothe L, Gidenne T, Debray L, Chalaye F. (2001). Intake regulation, performances and
health status according to feeding strategy around weaning. In Proceendings of the 2nd Meeting
of COST (Vol. 848, pp. 40–41).
Galante YM, DeConti A, Monteverdi R (1998) Application of trichoderma enzymes in food and
feed industries. In: Harman GF, Kubicek CP (eds) Trichoderma and gliocladium—enzymes,
vol. 2 of Biological control and commercial applications. Taylor & Francis, London, pp
311–326
Ghosh P, Singh A (1993) Physicochemical and biological treatments for enzymatic/microbial
conversion of lignocellulosic biomass. In: Advances in applied microbiology, vol 39. Academic
Press, New York, pp 295–333
Godfrey T, West S (1996) Textiles. Indus Enzymol:360–371
Graham H, Balnave D (1995) Dietary enzymes for increasing energy availability. In: Wallace RJ,
Chesson A (eds) Biotechnology in animal feeds and animal feedings. VHC, Weinheim, pp
296–309
Gupta R, Khasa YP, Kuhad RC (2011) Evaluation of pretreatment methods in improving the
enzymatic saccharification of cellulosic materials. Carbohydr Polym 84(3):1103–1109
Han W, He M (2010) The application of exogenous cellulase to improve soil fertility and plant
growth due to acceleration of straw decomposition. Bioresour Technol 101(10):3724–3731
Harrison MJ, Nouwens AS, Jardine DR, Zachara NE, Gooley AA, Nevalainen H, Packer NH
(1998) Modified glycosylation of cellobiohydrolase I from a high cellulase-producing mutant
strain of Trichoderma reesei. Eur J Biochem 256(1):119–127
Headon DR, Walsh G (1994) The industrial production of enzymes. Biotechnol Adv 12(4):635–646
Hebeish A, Ibrahim NA (2007) The impact of frontier sciences on textile industry. Colourage 54
(4):41–55
Henrissat B, Davies G (1997) Structural and sequence-based classification of glycoside hydrolases.
Curr Opin Struct Biol 7(5):637–644
Huang W, Niu H, Li Z, He Y, Gong W, Gong G (2008) Optimization of ellagic acid production
from ellagitannins by co-culture and correlation between its yield and activities of relevant
enzymes. Bioresour Technol 99(4):769–775
Ibrahim NA, El-Badry K, Eid BM, Hassan TM (2011) A new approach for biofinishing of cellulosecontaining fabrics using acid cellulases. Carbohydr Polym 83(1):116–121
Juturu V, Wu JC (2014) Microbial cellulases: engineering, production and applications. Renew Sust
Energ Rev 33:188–203
Kanmani R, Vijayabaskar P, Jayalakshmi S (2011) Saccharification of banana-agro waste and
clarification of apple juice by cellulase enzyme produced from Bacillus pumilis. World Appl Sci
J 12(11):2120–2128
Karmakar M, Ray RR (2011) Current trends in research and application of microbial cellulases. Res
J Microbiol 6(1):41
Kotaka A, Bando H, Kaya M, Kato-Murai M, Kuroda K, Sahara H et al (2008) Direct ethanol
production from barley β-glucan by sake yeast displaying Aspergillus oryzae β-glucosidase and
endoglucanase. J Biosci Bioeng 105(6):622–627
296
M. S. H. K. Tushar and A. Dutta
