211
Views
11
CrossRef citations to date
0
Altmetric
ORIGINAL ARTICLE

Xylanase production by endophytic Aspergillus niger using pentose-rich hydrothermal liquor from sugarcane bagasse

, , , , , , , , & show all
Pages 175-187 | Received 02 Feb 2015, Accepted 14 Aug 2015, Published online: 07 Oct 2015

References

  • Berlin A, Maximenko V, Gilkes N, Saddler J. 2007. Optimization of enzyme complexes for lignocellulose hydrolysis. Biotechnol Bioeng 97:287–296.
  • Bradford MM. 1976. Rapid and sensitive method for quantitation of microgram quantities of protein utilizing principle of protein-dye binding. Anal Biochem 72:248–254.
  • Cao Y, Meng D-J, Lu J, Long J. 2008. Statistical optimization of xylanase production by Aspergillus niger AN-13 under submerged fermentation using response surface methodology. African J Biotechnol 7:631–638.
  • de Alencar Guimaraes NC, Sorgatto M, Peixoto-Nogueira SDC, Betini JHA, Zanoelo FF, Marques MR, et al. 2013. Bioprocess and biotecnology: effect of xylanase from Aspergillus niger and Aspergillus flavus on pulp biobleaching and enzyme production using agroindustrial residues as substract. SpringerPlus 2: 380–380.
  • de Souza WR, Maitan-Alfenas GP, de Gouvea PF, Brown NA, Savoldi M, Battaglia E, et al. 2013. The influence of Aspergillus niger transcription factors AraR and XlnR in the gene expression during growth in D-xylose, L-arabinose and steam-exploded sugarcane bagasse. Fungal Genet Biol 60:29–45.
  • de Vries RP, Visser J. 2001. Aspergillus enzymes involved in degradation of plant cell wall polysaccharides. Microbiol Mol Biol Rev 65:497–522.
  • de Vries RP, Visser J, de Graaff LH. 1999. CreA modulates the XlnR-induced expression on xylose of Aspergillus niger genes involved in xylan degradation. Res Microbiol 150:281–285.
  • Delabona Pda S, Cota J, Hoffmam ZB, Paixao DA, Farinas CS, Cairo JP, et al. 2013. Understanding the cellulolytic system of Trichoderma harzianum P49P11 and enhancing saccharification of pretreated sugarcane bagasse by supplementation with pectinase and alpha-L-arabinofuranosidase. Bioresour Technol 131:500–507.
  • Delabona Pda S, Farinas CS, da Silva MR, Azzoni SF, Pradella JG. 2012. Use of a new Trichoderma harzianum strain isolated from the Amazon rainforest with pretreated sugar cane bagasse for on-site cellulase production. Bioresour Technol 107:517–521.
  • Diniz SC, Taciro MK, Gomez JGC, Pradella JGD. 2004. High-cell-density cultivation of Pseudomonas putida IPT 046 and medium-chain-length polyhydroxyalkanoate production from sugarcane carbohydrates. Appl Biochem Biotechnol 119:51–69.
  • Dobrev GT, Pishtiyski IG, Stanchev VS, Mircheva R. 2007. Optimization of nutrient medium containing agricultural wastes for xylanase production by Aspergillus niger B03 using optimal composite experimental design. Bioresour Technol 98:2671–2678.
  • Fortes Gottschalk LM, Oliveira RA, da Silva Bon EP. 2010. Cellulases, xylanases, beta-glucosidase and ferulic acid esterase produced by Trichoderma and Aspergillus act synergistically in the hydrolysis of sugarcane bagasse. Biochemical Engineering Journal 51:72–78.
  • Fortes Gottschalk LM, Paredes RDS, Sobral Teixeira RS, da Silva ASA, da Silva Bon EP. 2013. Efficient production of lignocellulolytic enzymes xylanase, beta-xylosidase, ferulic acid esterase and beta-glucosidase by the mutant strain Aspergillus awamori 2B.361 U2/1. Braz J Microbiol 44:569–576.
  • Ghose TK. 1987. Measurement of cellulase activities. Pure and Applied Chemistry 59:257–268.
  • Hendriks ATWM, Zeeman G. 2009. Pretreatments to enhance the digestibility of lignocellulosic biomass. Bioresour Technol 100:10–18.
  • Imman S, Arnthong J, Burapatana V, Laosiripojana N, Champreda V. 2013. Autohydrolysis of Tropical Agricultural Residues by Compressed Liquid Hot Water Pretreatment. Appl Biochem Biotechnol 170:1982–1995.
  • Irfan M, Nadeem M, Syed QA, Baig S. 2010. Submerged cultivation of Aspergillus niger on Pretreated sugarcane bagasse. World Journal of Agricultural Sciences 6:466–472.
  • Kadam K. 1996. Cellulase production. Handbook on bioethanol: Production and utilization:213–252.
  • Keller A, Nesvizhskii AI, Kolker E, Aebersold R. 2002. Empirical statistical model to estimate the accuracy of peptide identifications made by MS/MS and database search. Anal Chem 74:5383–5392.
  • Klein‐Marcuschamer D, Oleskowicz‐Popiel P, Simmons BA, Blanch HW. 2012. The challenge of enzyme cost in the production of lignocellulosic biofuels. Biotechnol Bioeng 109:1083–1087.
  • Mandels M, Reese ET. 1960. Induction of cellulase in fungi by cellobiose. J Bacteriol 79:816–826.
  • Marton JM. 2002. Avaliação de diferentes carvões ativos e das condições de adsorção no tratamento do hidrolisado hemicelulósico de bagaço de cana para obtenção biotecnológica de xilitol. Faculdade de Engenharia Química de Lorena. Lorena: Universidade de São Paulo. pp. 105.
  • Michelin M, Polizeli Mde L, Ruzene DS, Silva DP, Ruiz HA, Vicente AA, et al. 2012a. Production of xylanase and beta-xylosidase from autohydrolysis liquor of corncob using two fungal strains. Bioprocess Biosyst Eng 35:1185–1192.
  • Michelin M, Polizeli MDLTM, Ruzene DS, Silva DP, Vicente AA, Jorge JA, et al. 2012b. Xylanase and beta-Xylosidase Production by Aspergillus ochraceus: New Perspectives for the Application of Wheat Straw Autohydrolysis Liquor. Appl Biochem Biotechnol 166:336–347.
  • Miller GL. 1959. Use of dinitrosalicylic acid reagent for determination of reducing sugar. Anal Chem 31:426–428.
  • Mohamed SA, Al-Malki AL, Khan JA, Kabli SA, Al-Garni SM. 2013. Solid State Production of Polygalacturonase and Xylanase by Trichoderma Species Using Cantaloupe and Watermelon Rinds. J Microbiol 51:605–611.
  • Nesvizhskii AI, Keller A, Kolker E, Aebersold R. 2003. A statistical model for identifying proteins by tandem mass spectrometry. Analytical Chemistry 75:4646–4658.
  • Pandya JJ, Gupte A. 2012. Production of xylanase under solid-state fermentation by Aspergillus tubingensis JP-1 and its application. Bioprocess Biosyst Eng 35:769–779.
  • Pereira BMP, Alvarez TM, da Silva Delabona P, Dillon AJP, Squina FM, da Cruz Pradella JG. 2013. Cellulase On-Site Production from Sugar Cane Bagasse Using Penicillium echinulatum. BioEnergy Research 6:1052–1062.
  • Robl D, Delabona Pda S, Mergel CM, Rojas JD, Costa Pdos S, Pimentel IC, et al. 2013. The capability of endophytic fungi for production of hemicellulases and related enzymes. BMC biotechnology 13:94.
  • Rocha GJM, Goncalves AR, Oliveira BR, Olivares EG, Rossell CEV. 2012. Steam explosion pretreatment reproduction and alkaline delignification reactions performed on a pilot scale with sugarcane bagasse for bioethanol production. Industrial Crops and Products 35:274–279.
  • Rodrigues C, de Souza Vandenberghe LP, Teodoro J, Pandey A, Soccol CR. 2009. Improvement on Citric Acid Production in Solid-state Fermentation by Aspergillus niger LPB BC Mutant Using Citric Pulp. Appl Biochem Biotechnol 158:72–87.
  • Rodriguez-Zuniga UF, Farinas CS, Neto VB, Couri S, Crestana S. 2011. Aspergillus niger production of cellulases by solid-state fermentation. Pesquisa Agropecuária Brasileira 46:912–919.
  • Ruijter GJG, van de Vondervoort PJI, Visser J. 1999. Oxalic acid production by Aspergillus niger: an oxalate-non-producing mutant produces citric acid at pH 5 and in the presence of manganese. Microbiology-Uk 145:2569–2576.
  • Schuster E, Dunn-Coleman N, Frisvad JC, Van Dijck PW. 2002. On the safety of Aspergillus niger–a review. Appl Microbiol Biotechnol 59:426–435.
  • Shevchenko A, Tomas H, Havli sbreve J, Olsen JV, Mann M. 2007. In-gel digestion for mass spectrometric characterization of proteins and proteomes. Nat Protoc 1:2856–2860.
  • van Peij N, Visser J, de Graaff LH. 1998. Isolation and analysis of xlnR, encoding a transcriptional activator co-ordinating xylanolytic expression in Aspergillus niger. Mol Microbiol 27: 131–142.
  • Zhang J, Siika-aho M, Tenkanen M, Viikari L. 2011. The role of acetyl xylan esterase in the solubilization of xylan and enzymatic hydrolysis of wheat straw and giant reed. Biotechnol Biofuels 4.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.