蔗渣
发酵
化学
水解物
水解
木糖
食品科学
甜高粱
生物化学
高粱
生物技术
农学
生物
作者
Hideo Kawaguchi,Hiroshi Teramura,Kouji Uematsu,Kiyotaka Y. Hara,Tomohisa Hasunuma,Ko Hirano,Takashi Sazuka,Hidemi Kitano,Yota Tsuge,Prihardi Kahar,Satoko Niimi-Nakamura,Ken Ichi Oinuma,Naoki Takaya,Shigemitsu Kasuga,Chiaki Ogino,Akihiko Kondo
标识
DOI:10.1016/j.biortech.2015.01.097
摘要
Dilute acid-pretreated sorghum bagasse, which was predominantly composed of glucan (59%) and xylose (7.2%), was used as a lignocellulosic feedstock for d-phenyllactic acid (PhLA) production by a recombinant Escherichia coli strain expressing phenylpyruvate reductase from Wickerhamia fluorescens. During fermentation with enzymatic hydrolysate of sorghum bagasse as a carbon source, the PhLA yield was reduced by 35% compared to filter paper hydrolysate, and metabolomics analysis revealed that NAD(P)H regeneration and intracellular levels of erythrose-4-phosphate and phosphoenolpyruvate for PhLA biosynthesis markedly reduced. Compared to separate hydrolysis and fermentation (SHF) with sorghum bagasse hydrolysate, simultaneous saccharification and fermentation (SSF) of sorghum bagasse under glucose limitation conditions yielded 4.8-fold more PhLA with less accumulation of eluted components, including p-coumaric acid and aldehydes, which inhibited PhLA fermentation. These results suggest that gradual enzymatic hydrolysis during SSF enhances PhLA production under glucose limitation and reduces the accumulation of fermentation inhibitors, collectively leading to increased PhLA yield.
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