Lin Y, Tanaka S (2006) Ethanol fermentation from biomass resources: current state and prospects.
Appl Microbiol Biotechnol 69(6):627–642
Linden JC, Decker SR, Samara M (1994) Role of acetyl esterase in biomass conversion. ACS
Publications, Washington, DC
Liu JM, Xin XJ, Li CX, Xu JH, Bao J (2012) Cloning of thermostable cellulase genes of
Clostridium thermocellum and their secretive expression in Bacillus subtilis. Appl Biochem
Biotechnol 166(3):652–662. https://doi.org/10.1007/s12010-011-9456-z
Liu J, Liu Y, Yan F, Jiang Z, Yang S, Yan Q (2016) Gene cloning, functional expression and
characterisation of a novel type I pullulanase from Paenibacillus barengoltzii and its application
in resistant starch production. Protein Expr Purif 121:22–30
Lombard V, Golaconda Ramulu H, Drula E, Coutinho PM, Henrissat B (2014) The carbohydrateactive enzymes database (CAZy) in 2013. Nucleic Acids Res 42(D1):D490–D495
Lopes ML, de Lima Paulillo SC, Godoy A, Cherubin RA, Lorenzi MS, Giometti FHC, Bernardino
CD, de Amorim Neto HB, de Amorim HV (2016) Ethanol production in Brazil: a bridge
between science and industry. Braz J Microbiol 47:64–76
López-Mondéjar R, Algora C, Baldrian P (2019) Lignocellulolytic systems of soil bacteria: a vast
and diverse toolbox for biotechnological conversion processes. Biotechnol Adv 37(6):107374
Lü J, Sheahan C, Fu P (2011) Metabolic engineering of algae for fourth generation biofuels
production. Energy Environ Sci 4(7):2451–2466
Lynd LR, Weimer PJ, Van Zyl WH, Pretorius IS (2002) Microbial cellulose utilization: fundamentals and biotechnology. Microbiol Mol Biol Rev 66(3):506–577
Majidian P, Tabatabaei M, Zeinolabedini M, Naghshbandi MP, Chisti Y (2018) Metabolic engineering of microorganisms for biofuel production. Renew Sust Energ Rev 82:3863–3885
Mandal A (2015) Review on microbial xylanases and their applications. Appl Microbiol Biotechnol
42:45–42
Manikandan K, Bhardwaj A, Ghosh A, Reddy V, Ramakumar S (2005) Crystallization and
preliminary X-ray study of a family 10 alkali-thermostable xylanase from alkalophilic Bacillus
sp. strain NG-27. Acta Crystallogr Sect F: Struct Biol Cryst Commun 61(8):747–749
Martin Perez L, Benitez Casanova L, Moreno Perez AJ, Pérez Gómez D, Gavalda Martin S,
Ledesma-García L, Valbuena Crespo N, Díez García B, Reyes-Sosa FM (2017) Coupling the
pretreatment and hydrolysis of lignocellulosic biomass by the expression of beta-xylosidases.
Biotechnol Bioeng 114(11):2497–2506
Matsuo N, Kaneko S, Kuno A, Kobayashi H, Kusakabe I (2000) Purification, characterization and
gene cloning of two α-L-arabinofuranosidases from Streptomyces chartreusis GS901. Biochem
J 346(1):9–15
Maurya DP, Singla A, Negi S (2015) An overview of key pretreatment processes for biological
conversion of lignocellulosic biomass to bioethanol. 3 Biotech 5(5):597–609
Mayer AM, Staples RC (2002) Laccase: new functions for an old enzyme. Phytochemistry 60
(6):551–565
Mccleary BV, Matheson NK (1987) Enzymic analysis of polysaccharide structure. In: Advances in
carbohydrate chemistry and biochemistry, vol 44. Elsevier, Amsterdam, pp 147–276
Mckie VA, Vincken J-P, Voragen AG, Van Den Broek LA, Stimson E, Gilbert HJ (2001) A new
family of rhamnogalacturonan lyases contains an enzyme that binds to cellulose. Biochem J 355
(1):167–177
Mechaly A, Fierobe H-P, Belaich A, Belaich J-P, Lamed R, Shoham Y, Bayer EA (2001) Cohesindockerin interaction in cellulosome assembly A SINGLE HYDROXYL GROUP OF A
DOCKERIN DOMAIN DISTINGUISHES BETWEEN NONRECOGNITION AND HIGH
AFFINITY RECOGNITION. J Biol Chem 276(13):9883–9888
Mestechkina N, Anulov O, Smirnova N, Shcherbukhin V (2000) Composition and structure of a
galactomannan macromolecule from seeds of Astragalus lehmannianus bunge. Appl Biochem
Microbiol 36(5):502–506
Mienda BS, Yahya A, Galadima I, Shamsir M (2014) An overview of microbial proteases for
industrial applications. Res J Pharm Biol Chem Sci 5(1):388–396
9 Microbial and Bioinformatics Approach in Biofuel Production
299
Appl Microbiol Biotechnol 69(6):627–642
Linden JC, Decker SR, Samara M (1994) Role of acetyl esterase in biomass conversion. ACS
Publications, Washington, DC
Liu JM, Xin XJ, Li CX, Xu JH, Bao J (2012) Cloning of thermostable cellulase genes of
Clostridium thermocellum and their secretive expression in Bacillus subtilis. Appl Biochem
Biotechnol 166(3):652–662. https://doi.org/10.1007/s12010-011-9456-z
Liu J, Liu Y, Yan F, Jiang Z, Yang S, Yan Q (2016) Gene cloning, functional expression and
characterisation of a novel type I pullulanase from Paenibacillus barengoltzii and its application
in resistant starch production. Protein Expr Purif 121:22–30
Lombard V, Golaconda Ramulu H, Drula E, Coutinho PM, Henrissat B (2014) The carbohydrateactive enzymes database (CAZy) in 2013. Nucleic Acids Res 42(D1):D490–D495
Lopes ML, de Lima Paulillo SC, Godoy A, Cherubin RA, Lorenzi MS, Giometti FHC, Bernardino
CD, de Amorim Neto HB, de Amorim HV (2016) Ethanol production in Brazil: a bridge
between science and industry. Braz J Microbiol 47:64–76
López-Mondéjar R, Algora C, Baldrian P (2019) Lignocellulolytic systems of soil bacteria: a vast
and diverse toolbox for biotechnological conversion processes. Biotechnol Adv 37(6):107374
Lü J, Sheahan C, Fu P (2011) Metabolic engineering of algae for fourth generation biofuels
production. Energy Environ Sci 4(7):2451–2466
Lynd LR, Weimer PJ, Van Zyl WH, Pretorius IS (2002) Microbial cellulose utilization: fundamentals and biotechnology. Microbiol Mol Biol Rev 66(3):506–577
Majidian P, Tabatabaei M, Zeinolabedini M, Naghshbandi MP, Chisti Y (2018) Metabolic engineering of microorganisms for biofuel production. Renew Sust Energ Rev 82:3863–3885
Mandal A (2015) Review on microbial xylanases and their applications. Appl Microbiol Biotechnol
42:45–42
Manikandan K, Bhardwaj A, Ghosh A, Reddy V, Ramakumar S (2005) Crystallization and
preliminary X-ray study of a family 10 alkali-thermostable xylanase from alkalophilic Bacillus
sp. strain NG-27. Acta Crystallogr Sect F: Struct Biol Cryst Commun 61(8):747–749
Martin Perez L, Benitez Casanova L, Moreno Perez AJ, Pérez Gómez D, Gavalda Martin S,
Ledesma-García L, Valbuena Crespo N, Díez García B, Reyes-Sosa FM (2017) Coupling the
pretreatment and hydrolysis of lignocellulosic biomass by the expression of beta-xylosidases.
Biotechnol Bioeng 114(11):2497–2506
Matsuo N, Kaneko S, Kuno A, Kobayashi H, Kusakabe I (2000) Purification, characterization and
gene cloning of two α-L-arabinofuranosidases from Streptomyces chartreusis GS901. Biochem
J 346(1):9–15
Maurya DP, Singla A, Negi S (2015) An overview of key pretreatment processes for biological
conversion of lignocellulosic biomass to bioethanol. 3 Biotech 5(5):597–609
Mayer AM, Staples RC (2002) Laccase: new functions for an old enzyme. Phytochemistry 60
(6):551–565
Mccleary BV, Matheson NK (1987) Enzymic analysis of polysaccharide structure. In: Advances in
carbohydrate chemistry and biochemistry, vol 44. Elsevier, Amsterdam, pp 147–276
Mckie VA, Vincken J-P, Voragen AG, Van Den Broek LA, Stimson E, Gilbert HJ (2001) A new
family of rhamnogalacturonan lyases contains an enzyme that binds to cellulose. Biochem J 355
(1):167–177
Mechaly A, Fierobe H-P, Belaich A, Belaich J-P, Lamed R, Shoham Y, Bayer EA (2001) Cohesindockerin interaction in cellulosome assembly A SINGLE HYDROXYL GROUP OF A
DOCKERIN DOMAIN DISTINGUISHES BETWEEN NONRECOGNITION AND HIGH
AFFINITY RECOGNITION. J Biol Chem 276(13):9883–9888
Mestechkina N, Anulov O, Smirnova N, Shcherbukhin V (2000) Composition and structure of a
galactomannan macromolecule from seeds of Astragalus lehmannianus bunge. Appl Biochem
Microbiol 36(5):502–506
Mienda BS, Yahya A, Galadima I, Shamsir M (2014) An overview of microbial proteases for
industrial applications. Res J Pharm Biol Chem Sci 5(1):388–396
9 Microbial and Bioinformatics Approach in Biofuel Production
299
