Begemann MB, Mormile MR, Paul VG, Vidt DJ (2011) Potential enhancement of biofuel production through enzymatic biomass degradation activity and biodiesel production by halophilic
microorganisms. In: Halophiles and hypersaline environments. Springer, Berlin, pp 341–357
Bégum P, Lemaire M (1996) The cellulosome: an exocellular, multiprotein complex specialized in
cellulose degradation. Crit Rev Biochem Mol Biol 31(3):201–236
Bennati-Granier C, Garajova S, Champion C, Grisel S, Haon M, Zhou S, Fanuel M, Ropartz D,
Rogniaux H, Gimbert I (2015) Substrate specificity and regioselectivity of fungal AA9 lytic
polysaccharide monooxygenases secreted by Podospora anserina. Biotechnol Biofuels 8(1):90
Bertoldo C, Antranikian G (2001) Amylolytic enzymes from hyperthermophiles. In: Methods in
enzymology, vol 330. Elsevier, Amsterdam, pp 269–290
Bertoldo C, Antranikian G (2002) Starch-hydrolyzing enzymes from thermophilic archaea and
bacteria. Curr Opin Chem Biol 6(2):151–160
Bhari R, Singh RS (2016) Novel enzymes in biofuel production. In: Biofuels: production and future
perspectives. Taylor & Francis, London, p 461
Bhatia Y, Mishra S, Bisaria V (2002) Microbial β-glucosidases: cloning, properties, and applications. Crit Rev Biotechnol 22(4):375–407
Bhatia SK, Kim S-H, Yoon J-J, Yang Y-H (2017) Current status and strategies for second
generation biofuel production using microbial systems. Energy Convers Manag 148:1142–1156
Binod P, Janu K, Sindhu R, Pandey A (2011) Hydrolysis of lignocellulosic biomass for bioethanol
production. In: Biofuels. Elsevier, Amsterdam, pp 229–250
Binod P, Gnansounou E, Sindhu R, Pandey A (2019) Enzymes for second generation biofuels:
recent developments and future perspectives. Bioresour Technol Rep 5:317–325
Borisova AS, Isaksen T, Dimarogona M, Kognole AA, Mathiesen G, Várnai A, Røhr ÅK, Payne
CM, Sørlie M, Sandgren M (2015) Structural and functional characterization of a lytic polysaccharide monooxygenase with broad substrate specificity. J Biol Chem 290(38):22955–22969
Bosetto A, Justo PI, Zanardi B, Venzon SS, Graciano L, Dos Santos EL, Simão RCG (2016)
Research progress concerning fungal and bacterial β-xylosidases. Appl Biochem Biotechnol
178(4):766–795
Bourne Y, Henrissat B (2001) Glycoside hydrolases and glycosyltransferases: families and functional modules. Curr Opin Struct Biol 11(5):593–600
Brás JL, Alves VD, Carvalho AL, Najmudin S, Prates JA, Ferreira LM, Bolam DN, Romão MJ,
Gilbert HJ, Fontes CM (2012) Novel Clostridium thermocellum type I cohesin-dockerin
complexes reveal a single binding mode. J Biol Chem 287(53):44394–44405
Brown ME, Barros T, Chang MC (2012) Identification and characterization of a multifunctional dye
peroxidase from a lignin-reactive bacterium. ACS Chem Biol 7(12):2074–2081
Buchanan BB, Gruissem W, Jones RL (2015) Biochemistry and molecular biology of plants. Wiley,
New York
Bugg TD, Ahmad M, Hardiman EM, Rahmanpour R (2011a) Pathways for degradation of lignin in
bacteria and fungi. Nat Prod Rep 28(12):1883–1896
Bugg TD, Ahmad M, Hardiman EM, Singh R (2011b) The emerging role for bacteria in lignin
degradation and bio-product formation. Curr Opin Biotechnol 22(3):394–400
Byadgi SA, Kalburgi PB (2016) Production of bioethanol from waste newspaper. Procedia Environ
Sci 35:555–562
Cairns JRK, Esen A (2010) β-Glucosidases. Cell Mol Life Sci 67(20):3389–3405
Camarero S, Garcıa O, Vidal T, Colom J, del Rıo JC, Gutiérrez A, Gras JM, Monje R, Martınez MJ,
Martınez ÁT (2004) Efficient bleaching of non-wood high-quality paper pulp using laccasemediator system. Enzym Microb Technol 35(2–3):113–120
Carrillo-Reyes J, Barragán-Trinidad M, Buitrón G (2016) Biological pretreatments of microalgal
biomass for gaseous biofuel production and the potential use of rumen microorganisms: a
review. Algal Res 18:341–351
Carvalheiro F, Duarte LC, Gírio FM (2008) Hemicellulose biorefineries: a review on biomass
pretreatments. J Sci Ind Res 67:849–864
9 Microbial and Bioinformatics Approach in Biofuel Production
293
microorganisms. In: Halophiles and hypersaline environments. Springer, Berlin, pp 341–357
Bégum P, Lemaire M (1996) The cellulosome: an exocellular, multiprotein complex specialized in
cellulose degradation. Crit Rev Biochem Mol Biol 31(3):201–236
Bennati-Granier C, Garajova S, Champion C, Grisel S, Haon M, Zhou S, Fanuel M, Ropartz D,
Rogniaux H, Gimbert I (2015) Substrate specificity and regioselectivity of fungal AA9 lytic
polysaccharide monooxygenases secreted by Podospora anserina. Biotechnol Biofuels 8(1):90
Bertoldo C, Antranikian G (2001) Amylolytic enzymes from hyperthermophiles. In: Methods in
enzymology, vol 330. Elsevier, Amsterdam, pp 269–290
Bertoldo C, Antranikian G (2002) Starch-hydrolyzing enzymes from thermophilic archaea and
bacteria. Curr Opin Chem Biol 6(2):151–160
Bhari R, Singh RS (2016) Novel enzymes in biofuel production. In: Biofuels: production and future
perspectives. Taylor & Francis, London, p 461
Bhatia Y, Mishra S, Bisaria V (2002) Microbial β-glucosidases: cloning, properties, and applications. Crit Rev Biotechnol 22(4):375–407
Bhatia SK, Kim S-H, Yoon J-J, Yang Y-H (2017) Current status and strategies for second
generation biofuel production using microbial systems. Energy Convers Manag 148:1142–1156
Binod P, Janu K, Sindhu R, Pandey A (2011) Hydrolysis of lignocellulosic biomass for bioethanol
production. In: Biofuels. Elsevier, Amsterdam, pp 229–250
Binod P, Gnansounou E, Sindhu R, Pandey A (2019) Enzymes for second generation biofuels:
recent developments and future perspectives. Bioresour Technol Rep 5:317–325
Borisova AS, Isaksen T, Dimarogona M, Kognole AA, Mathiesen G, Várnai A, Røhr ÅK, Payne
CM, Sørlie M, Sandgren M (2015) Structural and functional characterization of a lytic polysaccharide monooxygenase with broad substrate specificity. J Biol Chem 290(38):22955–22969
Bosetto A, Justo PI, Zanardi B, Venzon SS, Graciano L, Dos Santos EL, Simão RCG (2016)
Research progress concerning fungal and bacterial β-xylosidases. Appl Biochem Biotechnol
178(4):766–795
Bourne Y, Henrissat B (2001) Glycoside hydrolases and glycosyltransferases: families and functional modules. Curr Opin Struct Biol 11(5):593–600
Brás JL, Alves VD, Carvalho AL, Najmudin S, Prates JA, Ferreira LM, Bolam DN, Romão MJ,
Gilbert HJ, Fontes CM (2012) Novel Clostridium thermocellum type I cohesin-dockerin
complexes reveal a single binding mode. J Biol Chem 287(53):44394–44405
Brown ME, Barros T, Chang MC (2012) Identification and characterization of a multifunctional dye
peroxidase from a lignin-reactive bacterium. ACS Chem Biol 7(12):2074–2081
Buchanan BB, Gruissem W, Jones RL (2015) Biochemistry and molecular biology of plants. Wiley,
New York
Bugg TD, Ahmad M, Hardiman EM, Rahmanpour R (2011a) Pathways for degradation of lignin in
bacteria and fungi. Nat Prod Rep 28(12):1883–1896
Bugg TD, Ahmad M, Hardiman EM, Singh R (2011b) The emerging role for bacteria in lignin
degradation and bio-product formation. Curr Opin Biotechnol 22(3):394–400
Byadgi SA, Kalburgi PB (2016) Production of bioethanol from waste newspaper. Procedia Environ
Sci 35:555–562
Cairns JRK, Esen A (2010) β-Glucosidases. Cell Mol Life Sci 67(20):3389–3405
Camarero S, Garcıa O, Vidal T, Colom J, del Rıo JC, Gutiérrez A, Gras JM, Monje R, Martınez MJ,
Martınez ÁT (2004) Efficient bleaching of non-wood high-quality paper pulp using laccasemediator system. Enzym Microb Technol 35(2–3):113–120
Carrillo-Reyes J, Barragán-Trinidad M, Buitrón G (2016) Biological pretreatments of microalgal
biomass for gaseous biofuel production and the potential use of rumen microorganisms: a
review. Algal Res 18:341–351
Carvalheiro F, Duarte LC, Gírio FM (2008) Hemicellulose biorefineries: a review on biomass
pretreatments. J Sci Ind Res 67:849–864
9 Microbial and Bioinformatics Approach in Biofuel Production
293
