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Exometabolomics Approaches in Studying the Application of Lignocellulosic Biomass as Fermentation Feedstock

机译:Exometabolomics方法在研究木质纤维素生物质作为发酵原料中的应用

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摘要

Lignocellulosic biomass is the future feedstock for the production of biofuel and bio-based chemicals. The pretreatment-hydrolysis product of biomass, so-called hydrolysate, contains not only fermentable sugars, but also compounds that inhibit its fermentability by microbes. To reduce the toxicity of hydrolysates as fermentation media, knowledge of the identity of inhibitors and their dynamics in hydrolysates need to be obtained. In the past decade, various studies have applied targeted metabolomics approaches to examine the composition of biomass hydrolysates. In these studies, analytical methods like HPLC, RP-HPLC, CE, GC-MS and LC-MS/MS were used to detect and quantify small carboxylic acids, furans and phenols. Through applying targeted metabolomics approaches, inhibitors were identified in hydrolysates and their dynamics in fermentation processes were monitored. However, to reveal the overall composition of different hydrolysates and to investigate its influence on hydrolysate fermentation performance, a non-targeted metabolomics study needs to be conducted. In this review, a non-targeted and generic metabolomics approach is introduced to explore inhibitor identification in biomass hydrolysates, and other similar metabolomics questions.
机译:木质纤维素生物质是生产生物燃料和生物基化学品的未来原料。生物质的预处理水解产物,即所谓的水解产物,不仅包含可发酵的糖,而且还包含通过微生物抑制其发酵能力的化合物。为了降低水解产物作为发酵培养基的毒性,需要获得有关抑制剂特性及其在水解产物中的动力学的知识。在过去的十年中,各种研究已经应用了靶向代谢组学方法来检查生物质水解产物的组成。在这些研究中,使用了诸如HPLC,RP-HPLC,CE,GC-MS和LC-MS / MS之类的分析方法来检测和定量小分子羧酸,呋喃和苯酚。通过应用靶向代谢组学方法,可以在水解产物中鉴定抑制剂,并监测其在发酵过程中的动力学。但是,要揭示不同水解产物的总体组成并研究其对水解产物发酵性能的影响,需要进行非目标代谢组学研究。在这篇综述中,引入了一种非针对性的通用代谢组学方法,以探索生物质水解物中抑制剂的鉴定以及其他类似的代谢组学问题。

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