Srivastava N, Mishra P, Upadhyay S (2020) Industrial enzymes for biofuels production: recent
updates and future trends. Elsevier, Amsterdam
Stern J, Kahn A, Vazana Y, Shamshoum M, Morais S, Lamed R, Bayer EA (2015) Significance of
relative position of cellulases in designer cellulosomes for optimized cellulolysis. PLoS One 10
(5):e0127326
Su X, Zhang J, Mackie RI, Cann IK (2012) Supplementing with non-glycoside hydrolase proteins
enhances enzymatic deconstruction of plant biomass. PLoS One 7(8):e43828
Subramaniyan S, Prema P (2000) Cellulase-free xylanases from Bacillus and other microorganisms.
FEMS Microbiol Lett 183(1):1–7
Subramaniyan S, Prema P (2002) Biotechnology of microbial xylanases: enzymology, molecular
biology, and application. Crit Rev Biotechnol 22(1):33–64
Sun Y, Cheng J (2002) Hydrolysis of lignocellulosic materials for ethanol production: a review.
Bioresour Technol 83(1):1–11. https://doi.org/10.1016/s0960-8524(01)00212-7
Sun FF, Hong J, Hu J, Saddler JN, Fang X, Zhang Z, Shen S (2015) Accessory enzymes influence
cellulase hydrolysis of the model substrate and the realistic lignocellulosic biomass. Enzym
Microb Technol 79:42–48
Sunna A, Antranikian G (1997) Xylanolytic enzymes from fungi and bacteria. Crit Rev Biotechnol
17(1):39–67
Suresh C, Kitaoka M, Hayashi K (2003) A thermostable non-xylanolytic α-glucuronidase of
Thermotoga maritima MSB8. Biosci Biotechnol Biochem 67(11):2359–2364
Tabka MG, Herpoël-Gimbert I, Monod F, Asther M, Sigoillot JC (2006) Enzymatic saccharification
of wheat straw for bioethanol production by a combined cellulase xylanase and feruloyl esterase
treatment. Enzym Microb Technol 39(4):897–902
Tanaka T, Kondo A (2015) Cell surface engineering of industrial microorganisms for biorefining
applications. Biotechnol Adv 33(7):1403–1411
Tenkanen M, Thornton J, Viikari L (1995) An acetylglucomannan esterase of Aspergillus oryzae;
purification, characterization and role in the hydrolysis of O-acetyl-galactoglucomannan. J
Biotechnol 42(3):197–206
Teter SA (2012) DECREASE final technical report: development of a commercial ready enzyme
application system for ethanol. Novozymes Inc, Davis, CA
Theron LW, Divol B (2014) Microbial aspartic proteases: current and potential applications in
industry. Appl Microbiol Biotechnol 98(21):8853–8868
Tripathi R, Singh J, kumar Bharti R, Thakur IS (2014) Isolation, purification and characterization of
lipase from Microbacterium sp. and its application in biodiesel production. Energy Procedia
54:518–529
Tuohy MG, Walsh DJ, Murray PG, Claeyssens M, Cuffe MM, Savage AV, Coughlan MP (2002)
Kinetic parameters and mode of action of the cellobiohydrolases produced by Talaromyces
emersonii. Biochim Biophys Acta Protein Struct Mol Enzymol 1596(2):366–380
Vaaje-Kolstad G, Westereng B, Horn SJ, Liu Z, Zhai H, Sørlie M, Eijsink VG (2010) An oxidative
enzyme boosting the enzymatic conversion of recalcitrant polysaccharides. Science 330
(6001):219–222
Vaidya S, Srivastava P, Rathore P, Pandey A (2015) Amylases: a prospective enzyme in the field of
biotechnology. J Appl Biosci 41(1):1–18
Valderrama B, Ayala M, Vazquez-Duhalt R (2002) Suicide inactivation of peroxidases and the
challenge of engineering more robust enzymes. Chem Biol 9(5):555–565
Van der Maarel MJ, Van der Veen B, Uitdehaag JC, Leemhuis H, Dijkhuizen L (2002) Properties
and applications of starch-converting enzymes of the α-amylase family. J Biotechnol 94
(2):137–155
Van Zyl WH, Rose SH, Trollope K, Görgens JF (2010) Fungal β-mannanases: mannan hydrolysis,
heterologous production and biotechnological applications. Process Biochem 45(8):1203–1213
Vance C, Kirk T, Sherwood R (1980) Lignification as a mechanism of disease resistance. Annu Rev
Phytopathol 18(1):259–288
304
T. Karaytuğ et al.
Précédent

- 312/350

Suivant