首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Efficient ferulic acid and xylo-oligosaccharides production by a novel multi-modular bifunctional xylanase/feruloyl esterase using agricultural residues as substrates
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Efficient ferulic acid and xylo-oligosaccharides production by a novel multi-modular bifunctional xylanase/feruloyl esterase using agricultural residues as substrates

机译:使用农业残留物作为基材的新型多模块化双官能木聚糖酶/ Foruloyl酯的新型多模块化双官能木聚糖酶/ Foruloyl酯的高效生产

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摘要

Liberating high value-added compounds ferulic acid (FA) and xylo-oligosaccharides (XOSs) from agricultural residues is a promising strategy for the utilization of lignocellulose. In this study, a bifunctional xylanase/feruloyl esterase from bacterial consortium EMSD5 was heterogeneously expressed in Escherichia coli. Depending on the inter-domain synergism of the recombinant enzyme rXyn10A/Fae1A, high yields of FA (2.78, 1.82, 1.15 and 7.31 mg/g substrate, respectively) were obtained from 20 mg in-soluble wheat arabinoxylan, de-starched wheat bran, ultrafine-grinding corn stover and steam-exploded corncob. Meanwhile, 3.210, 1.235, 1.215 and 0.823 mg xylose/XOSs were also released. For cost-saving enzyme production, we firstly constructed a recombinant E. coli, which could secrete the bifunctional xylanase/feruloyl esterase out of cells. When the recombinant E. coli was cultured in medium containing 200 mg de-starched wheat bran, 474 mu g FA and 18.2 mg xylose/XOSs were also detected. Hence, rXyn10A/Fae1A and the recombinant strain showed great applied potential for FA and XOSs production.
机译:从农业残留量中解放高附加值的化合物阿魏酸(FA)和Xα-寡糖(XOLS)是利用木质纤维素的有希望的策略。在该研究中,来自细菌聚集体EMSD5的双官能木聚糖酶/ Foruloyl酯酶在大肠杆菌中非均相表达。根据重组酶Rxyme10A / Fae1a的域间协同作用,从20mg中,获得高产Fa(2.78,1.82,15和7.31mg / g底物的脱脂小麦麸皮,超细研磨玉米秸秆和蒸汽爆炸的玉米衫。同时,3.210,1.235,1.215和0.823mg木糖/ X组也被释放。对于节省成本节省酶生产,我们首先构建了一种重组大肠杆菌,其可以将双官能木聚糖酶/二氧酰酯酶分泌出细胞。当在含有200mg去淀粉的培养基中培养重组大肠杆菌时,还检测到474μg和18.2mg木糖/ Xoss。因此,Rxyn10A / Fae1a和重组菌株对FA和X组的产生施加了很大的应用。

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