39
Hong Y, Nizami AS, Pourbafrani M, Saville BA, MacLean HL (2013) Impact of cellulase production on environmental and financial metrics for lignocellulosic ethanol. Biofuels Bioprod
Biorefin 7:303–313
Huang R, Guo H, Su R, Qi W, He Z (2016) Enhanced cellulase recovery without β-glucosidase
supplementation for cellulosic ethanol production using an engineered strain and surfactant.
Biotechnol Bioeng. doi:10.1002/bit.26194
Igarashi K, Koivula A, Wada M, Kimura S, Penttilä M, Samejima M (2009) High speed atomic
force microscopy visualizes processive movement of Trichoderma reesei cellobiohydrolase I
on crystalline cellulose. J Biol Chem 284(52):36186–36190
Jäger G, Girfoglio M, Dollo F, Rinaldi R, Bongard H, Commandeur U, Fischer R, Spiess AC,
Büchs J (2011) How recombinant swollenin from Kluyveromyces lactis affects cellulosic substrates and accelerates their hydrolysis. Biotechnol Biofuels 4:33
Jalak J, Kurašin M, Teugjas H, Väljamäe P (2012) Endo-exo synergism in cellulose hydrolysis
revisited. J Biol Chem 287(34):28802–28815
Johnson E (2016) Integrated enzyme production lowers the cost of cellulosic ethanol. Biofuels
Bioprod Biorefin 10:164–174
Jourdier E, Ben-Chaabane F, Poughon L, Larroche C, Monot F (2012) Simple kinetic model of
cellulase production by Trichoderma reesei for productivity or yield maximization. Chem Eng
Trans 27:313–318
Jourdier E, Cohen C, Poughon L, Larroche C, Monot F, Chaabane FB (2013) Cellulase activity mapping of Trichoderma reesei cultivated in sugar mixtures under fed-batch conditions.
Biotechnol Biofuels 6:79
Jun HS, Qi M, Gong J, Egbosimba EE, Forsberg CW (2007) Outer membrane proteins of
Fibrobacter succinogenes with potential roles in adhesion to cellulose and in cellulose digestion. J Bacteriol 189(19):6806–6815
Juturu V, Wu JC (2012) Microbial xylanases: engineering, production and industrial applications.
Biotechnol Adv 30(6):1219–1227
Juturu V, Wu JC (2013) Insight into microbial hemicellulases other than xylanases: a review.
J Chem Technol Biotechnol 88(3):353–363
Juturu V, Wu JC (2014) Microbial exo-xylanases: a mini review. Appl Biochem Biotechnol
174(1):81–92
Knauf M, Moniruzzaman M (2004) Lignocellulosic biomass processing: a perspective. Int Sugar
J 106:147–150
Krishna C (2005) Solid-state fermentation systems-an overview. Crit Rev Biotechnol 25:1–30
Kubicek CP (2012) Systems biological approaches towards understanding cellulase production by
Trichoderma reesei J. Biotechnology 163(2):133–142
Kubicek CP, Mikus M, Schuster A, Schmoll M, Seiboth B (2009) Metabolic engineering strategies
for the improvement of cellulase production by Hypocrea jecorina. Biotechnol Biofuels 2:19
Kurasin M, Valjamae P (2011) Processivity of cellobiohydrolases is limited by the substrate. J Biol
Chem 286:169–177
Lavigne JA, Hill CMD, Tremblay A, St-Pierre P, Tomashek JJ (2009) Cellulase variants with
reduced inhibition by glucose. US patent Application. US20090186381 A1, July 23, 2009
Lavigne J, Scott B, Whisset M, Tomashek J (2010) Family 6 cellulase with decreased inactivation
by lignin. WIPO Patent Application WO 2010012102 A1, Feb 4, 2010
Leah R, Kigel J, Svendsen I, Mundy J (1995) Biochemical and molecular characterization of a
barley seed beta-glucosidase. J Biol Chem 270:15789–15797
Li Y, Sun L, Ge X, Zhang J (2016) Effects of lignin and surfactant on adsorption and hydrolysis of
cellulases on cellulose. Biotechnol Biofuels 9:20
Liming X, Xueliang S (2004) High-yield cellulase production by Trichoderma reesei ZU-02 on
corn cob residue. Bioresour Technol 91(3):259–262
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