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A finalized determinant for complete lignocellulose enzymatic saccharification potential to maximize bioethanol production in bioenergy Miscanthus.

Aftab AlamRan ZhangPeng LiuJiangfeng HuangYanting WangZhen HuMeysam MadadiDan SunRuofei HuArthur J RagauskasYuanyuan TuLiangcai Peng
Published in: Biotechnology for biofuels (2019)
Using four pairs of Miscanthus samples with distinct cell wall composition and varied biomass saccharification, this study has determined three main factors of lignocellulose recalcitrance that could be significantly reduced for much-increased biomass porosity upon optimal pretreatments. It has also established a novel standard that should be applicable to judge any types of biomass process technology for high biofuel production in distinct lignocellulose substrates. Hence, this study provides a potential strategy for precise genetic modification of lignocellulose in all bioenergy crops.
Keyphrases
  • cell wall
  • wastewater treatment
  • anaerobic digestion
  • nitric oxide
  • hydrogen peroxide
  • dna methylation
  • copy number