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Engineering of a novel cellulose-adherent cellulolytic Saccharomyces cerevisiae for cellulosic biofuel production

  • Zhuo Liu
  • , Shih Hsin Ho
  • , Kengo Sasaki
  • , Riaan Den Haan
  • , Kentaro Inokuma
  • , Chiaki Ogino
  • , Willem H. Van Zyl
  • , Tomohisa Hasunuma
  • , Akihiko Kondo*
  • *Corresponding author for this work
  • Kobe University
  • University of the Western Cape
  • Stellenbosch University
  • RIKEN

Research output: Contribution to journalArticlepeer-review

Abstract

Cellulosic biofuel is the subject of increasing attention. The main obstacle toward its economic feasibility is the recalcitrance of lignocellulose requiring large amount of enzyme to break. Several engineered yeast strains have been developed with cellulolytic activities to reduce the need for enzyme addition, but exhibiting limited effect. Here, we report the successful engineering of a cellulose-adherent Saccharomyces cerevisiae displaying four different synergistic cellulases on the cell surface. The cellulase-displaying yeast strain exhibited clear cell-to-cellulose adhesion and a "tearing" cellulose degradation pattern; the adhesion ability correlated with enhanced surface area and roughness of the target cellulose fibers, resulting in higher hydrolysis efficiency. The engineered yeast directly produced ethanol from rice straw despite a more than 40% decrease in the required enzyme dosage for high-density fermentation. Thus, improved cell-to-cellulose interactions provided a novel strategy for increasing cellulose hydrolysis, suggesting a mechanism for promoting the feasibility of cellulosic biofuel production.

Original languageEnglish
Article number24550
JournalScientific Reports
Volume6
DOIs
StatePublished - 15 Apr 2016

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