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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Liquid chromatography-mass spectrometry investigation of enzyme-resistant xylooligosaccharide structures of switchgrass associated with ammonia pretreatment, enzymatic saccharification, and fermentation
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Liquid chromatography-mass spectrometry investigation of enzyme-resistant xylooligosaccharide structures of switchgrass associated with ammonia pretreatment, enzymatic saccharification, and fermentation

机译:柳枝switch与氨预处理,酶促糖化和发酵相关的耐酶木寡糖结构的液相色谱-质谱研究

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Switchgrass is a potential source of renewable biomass for conversion to liquid biofuels. Efficient conversion requires effective strategies for pretreatment and enzymatic saccharification to produce fermentable sugars. Standard analysis of fermentation liquids includes detection of monosaccharides and ethanol to determine efficiency of conversion. Larger components, specifically oligosaccharides, are typically not measured due to the structural complexity of the products; however, as oligosaccharides they represent carbon available in biomass that is not converted to liquid fuels. In this study, ammonia-pretreated switchgrass was enzymatically depolymerized either independently or under simultaneous saccharification and fermentation conditions. Residual oligosaccharides were reducing end-labeled followed by hydrophilic interaction liquid chromatography mass spectrometry/mass spectrometry analysis. These data reveal 20 oligosaccharide peaks with distinct retention times and tandem mass spectrometry fragmentation patterns representing 13 different oligosaccharide compositions. All measured compositions were smaller than a chain length of six and were neither linear xylooligosaccharides nor modified with phenolic esters. This work represents a robust method to monitor and identify unhydrolyzed oligosaccharides from fermentations, thereby permitting the screening of targeted enzymatic activities to promote the complete hydrolysis of xylan.
机译:柳枝is是可再生生物质转化为液体生物燃料的潜在来源。高效转化需要进行预处理和酶促糖化以生产可发酵糖的有效策略。发酵液的标准分析包括检测单糖和乙醇以确定转化效率。由于产品的结构复杂性,通常无法测量较大的成分,特别是低聚糖。然而,作为低聚糖,它们代表了生物质中可利用的碳,但并未转化为液体燃料。在这项研究中,氨预处理的柳枝independently可独立进行酶解聚,也可在同时进行的糖化和发酵条件下进行酶解。将残留的低聚糖还原为末端标记,然后进行亲水相互作用液相色谱质谱/质谱分析。这些数据显示了具有不同保留时间的20个寡糖峰和代表13种不同寡糖组成的串联质谱碎片图。所有测得的组成均小于六链长,既不是直链木寡糖,也不是用酚酯改性的。这项工作代表了一种监测和鉴定发酵中未水解的寡糖的可靠方法,从而可以筛选目标酶活性来促进木聚糖的完全水解。

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