Literature DB >> 17253723

Efficient cellulase production by the filamentous fungus Acremonium cellulolyticus.

Yuko Ikeda1, Hiroyuki Hayashi, Naoyuki Okuda, Enock Y Park.   

Abstract

Cellulase production was investigated in a culture of a strain of Acremonium cellulolyticus. The medium components were optimized for the improvement of cellulase production. The maximum production of cellulolytic enzymes was obtained in a medium containing (grams per liter) 50 Solka Floc, 5 (NH4)2SO4, 24 KH2PO4, 4.7 potassium tartrate hemihydrate, 1.2 MgSO4.7H2O, 1 Tween 80, 4 urea, 0.01 ZnSO4.7H2O, 0.01 MnSO4.6H2O, and 0.01 CuSO4.7H2O, with a pH of 4.0. In the flask culture, 15.5 filter paper units (FPU)/mL of maximum cellulase activity was obtained, 17.42 FPU/mL in a 7-L bioreactor, and 13.08 FPU/mL in a 50-L scale bioreactor for 4-8 d at 30 degrees C. Average production rates were 1.94 FPU/mL.d in flasks, 2.86 FPU/mL.d in the 7-L bioreactor, and 2.56 FPU/mL.d in the 50-L bioreactor. Cellulase production on a small scale was successfully reproduced in the 50-L pilot scale bioreactor. Saccharification activity from A. cellulolyticus was compared with cellulolytic enzymes produced by other strains. The A. cellulolyticus culture broth had a comparable saccharification yield in comparison with those of other Trichoderma enzymes (GC220 or Cellulosin T2) under the same total cellulase activity. Its saccharification yield (percent of released reducing sugar to used dried substrate) was 60%, and its glucose content was 83%.

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Year:  2007        PMID: 17253723     DOI: 10.1021/bp060201s

Source DB:  PubMed          Journal:  Biotechnol Prog        ISSN: 1520-6033


  7 in total

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Journal:  World J Microbiol Biotechnol       Date:  2017-05-09       Impact factor: 3.312

2.  Extracellular hemicellulolytic enzymes from the maize endophyte Acremonium zeae.

Authors:  Kenneth M Bischoff; Donald T Wicklow; Douglas B Jordan; Sebastiao T de Rezende; Siqing Liu; Stephen R Hughes; Joseph O Rich
Journal:  Curr Microbiol       Date:  2009-01-31       Impact factor: 2.188

3.  Response of cellulase activity in pH-controlled cultures of the filamentous fungus Acremonium cellulolyticus.

Authors:  Joni Prasetyo; Shyuuhei Sumita; Naoyuki Okuda; Enoch Y Park
Journal:  Appl Biochem Biotechnol       Date:  2009-11-01       Impact factor: 2.926

4.  Isolation and cultivation of xylanolytic and cellulolytic Sarocladium kiliense and Trichoderma virens from the gut of the termite Reticulitermes santonensis.

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Journal:  Environ Sci Pollut Res Int       Date:  2014-10-11       Impact factor: 4.223

5.  One-pot bioethanol production from cellulose by co-culture of Acremonium cellulolyticus and Saccharomyces cerevisiae.

Authors:  Enoch Y Park; Kazuya Naruse; Tatsuya Kato
Journal:  Biotechnol Biofuels       Date:  2012-08-31       Impact factor: 6.040

6.  Bioconversion of paper sludge to biofuel by simultaneous saccharification and fermentation using a cellulase of paper sludge origin and thermotolerant Saccharomyces cerevisiae TJ14.

Authors:  Joni Prasetyo; Kazuya Naruse; Tatsuya Kato; Chuenchit Boonchird; Satoshi Harashima; Enoch Y Park
Journal:  Biotechnol Biofuels       Date:  2011-09-29       Impact factor: 6.040

7.  Identification and characterization of core cellulolytic enzymes from Talaromyces cellulolyticus (formerly Acremonium cellulolyticus) critical for hydrolysis of lignocellulosic biomass.

Authors:  Hiroyuki Inoue; Stephen R Decker; Larry E Taylor; Shinichi Yano; Shigeki Sawayama
Journal:  Biotechnol Biofuels       Date:  2014-10-09       Impact factor: 6.040

  7 in total

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