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首页> 外文期刊>BMC Biotechnology >Formulation of enzyme blends to maximize the hydrolysis of alkaline peroxide pretreated alfalfa hay and barley straw by rumen enzymes and commercial cellulases
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Formulation of enzyme blends to maximize the hydrolysis of alkaline peroxide pretreated alfalfa hay and barley straw by rumen enzymes and commercial cellulases

机译:配制酶混合物,以最大程度地通过瘤胃酶和商业纤维素酶水解碱性过氧化物预处理的苜蓿干草和大麦秸秆

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Background Efficient conversion of lignocellulosic biomass to fermentable sugars requires the synergistic action of multiple enzymes; consequently enzyme mixtures must be properly formulated for effective hydrolysis. The nature of an optimal enzyme blends depends on the type of pretreatment employed as well the characteristics of the substrate. In this study, statistical experimental design was used to develop mixtures of recombinant glycosyl hydrolases from thermophilic and anaerobic fungi that enhanced the digestion of alkaline peroxide treated alfalfa hay and barley straw by mixed rumen enzymes as well as commercial cellulases (Accelerase 1500, A1500; Accelerase XC, AXC). Results Combinations of feruloyl and acetyl xylan esterases (FAE1a; AXE16A_ASPNG), endoglucanase GH7 (EGL7A_THITE) and polygalacturonase (PGA28A_ASPNG) with rumen enzymes improved straw digestion. Inclusion of pectinase (PGA28A_ASPNG), endoxylanase (XYN11A_THITE), feruloyl esterase (FAE1a) and β-glucosidase (E-BGLUC) with A1500 or endoglucanase GH7 (EGL7A_THITE) and β-xylosidase (E-BXSRB) with AXC increased glucose release from alfalfa hay. Glucose yield from straw was improved when FAE1a and endoglucanase GH7 (EGL7A_THITE) were added to A1500, while FAE1a and AXE16A_ASPNG enhanced the activity of AXC on straw. Xylose release from alfalfa hay was augmented by supplementing A1500 with E-BGLUC, or AXC with EGL7A_THITE and XYN11A_THITE. Adding arabinofuranosidase (ABF54B_ASPNG) and esterases (AXE16A_ASPNG; AXE16B_ASPNG) to A1500, or FAE1a and AXE16A_ASPNG to AXC enhanced xylose release from barley straw, a response confirmed in a scaled up assay. Conclusion The efficacy of commercial enzyme mixtures as well as mixed enzymes from the rumen was improved through formulation with synergetic recombinant enzymes. This approach reliably identified supplemental enzymes that enhanced sugar release from alkaline pretreated alfalfa hay and barley straw.
机译:背景技术木质纤维素生物质向可发酵糖的有效转化需要多种酶的协同作用。因此,必须正确配制酶混合物以有效水解。最佳酶混合物的性质取决于所用预处理的类型以及底物的特性。在这项研究中,采用统计实验设计来开发嗜热和厌氧真菌重组糖基水解酶的混合物,从而通过混合瘤胃酶和商业纤维素酶(Accelerase 1500,A1500; Accelerase)增强碱性过氧化物处理的苜蓿干草和大麦秸秆的消化。 XC,AXC)。结果阿魏酰和乙酰木聚糖酯酶(FAE1a; AXE16A_ASPNG),内切葡聚糖酶GH7(EGL7A_THITE)和聚半乳糖醛酸酶(PGA28A_ASPNG)与瘤胃酶的结合改善了秸秆消化。含果胶酶(PGA28A_ASPNG),内切木聚糖酶(XYN11A_THITE),阿魏酸酯酶(FAE1a)和β-葡萄糖苷酶(E-BGLUC)与A1500或内切葡聚糖酶GH7(EGL7A_THITE)和β-木糖苷酶(E-BXSRal)与AX一起释放干草。将FAE1a和内切葡聚糖酶GH7(EGL7A_THITE)添加到A1500中可以提高秸秆的葡萄糖产量,而FAE1a和AXE16A_ASPNG可以增强AXC在秸秆上的活性。苜蓿干草中的木糖释放量通过在A1500中添加E-BGLUC或在AXC中添加EGL7A_THITE和XYN11A_THITE来增加。将阿拉伯呋喃糖苷酶(ABF54B_ASPNG)和酯酶(AXE16A_ASPNG; AXE16B_ASPNG)添加到A1500中,或将FAE1a和AXE16A_ASPNG添加到AXC中,可增强从大麦秸秆中释放木糖的能力,这一反应已在大规模试验中得到证实。结论通过配用协同重组酶可以提高市售酶混合物以及瘤胃混合酶的功效。这种方法可靠地鉴定了增强碱性预处理的苜蓿干草和大麦秸秆中糖释放的补充酶。

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