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High-throughput Saccharification Assay for Lignocellulosic Materials
Published on: July 3, 2011
Saccharification of poplar biomass by using lignocellulases from Pholiota adiposa
Sujit Sadashiv Jagtap1, Saurabh Sudha Dhiman, Marimuthu Jeya
1Department of Chemical Engineering, Konkuk University, Seoul 143-701, Republic of Korea.
Abstract:
A basidiomycetous fungus, identified as Pholiota adiposa SKU0714 on the basis of morphological and phylogenetic analyses, was found to secrete efficient lignocellulose degrading enzymes. The strain showed maximum endoglucanase, cellobiohydrolase and β-glucosidase activities of 26, 32 and 39 U/mL, respectively and also secreted xylanase, laccase, mannanase, and lignin peroxidase with activities of 1680, 0.12, 65 and 0.41 U/mL, respectively when grown with rice straw as a carbon source. Among the various plant biomasses tested for saccharification, poplar biomass produced the maximum amount of reducing sugar. Response surface methodology was used to optimize hydrolysis parameters. A maximum saccharification yield of 83.4% (667 mg/g-substrate), the highest yield from any plant biomass, was obtained with Populus biomass after 24h of hydrolysis. P. adiposa was proven to be a good choice for the production of reducing sugars from cellulosic biomass.
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