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Methodology for enabling high-throughput simultaneous saccharification and fermentation screening of yeast using solid biomass as a substrate

机译:使用固体生物质作为底物实现酵母高通量同时糖化和发酵筛选的方法

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Background High-throughput (HTP) screening is becoming an increasingly useful tool for collating biological data which would otherwise require the employment of excessive resources. Second generation biofuel production is one such process. HTP screening allows the investigation of large sample sets to be undertaken with increased speed and cost effectiveness. This paper outlines a methodology that will enable solid lignocellulosic substrates to be hydrolyzed and fermented at a 96-well plate scale, facilitating HTP screening of ethanol production, whilst maintaining repeatability similar to that achieved at a larger scale. Results The results showed that utilizing sheets of biomass of consistent density (handbills), for paper, and slurries of pretreated biomass that could be pipetted allowed standardized and accurate transfers to 96-well plates to be achieved (±3.1 and 1.7%, respectively). Processing these substrates by simultaneous saccharification and fermentation (SSF) at various volumes showed no significant difference on final ethanol yields, either at standard shake flask (200 mL), universal bottle (10 mL) or 96-well plate (1 mL) scales. Substrate concentrations of up to 10% (w/v) were trialed successfully for SSFs at 1 mL volume. The methodology was successfully tested by showing the effects of steam explosion pretreatment on both oilseed rape and wheat straws. Conclusions This methodology could be used to replace large shake flask reactions with comparatively fast 96-well plate SSF assays allowing for HTP experimentation. Additionally this method is compatible with a number of standardized assay techniques such as simple colorimetric, High-performance liquid chromatography (HPLC) and Nuclear magnetic resonance (NMR) spectroscopy. Furthermore this research has practical uses in the biorefining of biomass substrates for second generation biofuels and novel biobased chemicals by allowing HTP SSF screening, which should allow selected samples to be scaled up or studied in more detail.
机译:背景技术高通量(HTP)筛选正成为一种越来越有用的工具,用于整理生物数据,否则将需要使用过多的资源。第二代生物燃料生产就是这样一种过程。 HTP筛选使大型样品的研究可以提高速度和成本效益。本文概述了一种方法,该方法将使固体木质纤维素底物能够在96孔板规模上进行水解和发酵,从而有助于HTP筛选乙醇生产,同时保持与大规模生产相似的可重复性。结果结果表明,利用密度一致的生物质纸(传单),纸张和可以移液的预处理生物质浆料,可以实现标准化且准确地转移至96孔板(分别为±3.1和1.7%)。 。通过同时糖化和发酵(SSF)在各种体积下处理这些底物,无论是在标准摇瓶(200 mL),通用瓶(10 mL)还是96孔板(1 mL)规模下,最终乙醇产量均无显着差异。对于1 mL体积的SSF,成功试验了高达10%(w / v)的底物浓度。通过显示蒸汽爆炸预处理对油菜和小麦秸秆的影响,成功地测试了该方法。结论该方法可用于以相对较快的96孔板SSF分析代替大型摇瓶反应,从而进行HTP实验。另外,该方法与许多标准分析技术兼容,例如简单的比色法,高效液相色谱(HPLC)和核磁共振(NMR)光谱。此外,该研究通过允许进行HTP SSF筛选,在第二代生物燃料和新型生物基化学品的生物质底物的生物精制中具有实际用途,这应允许按比例放大或更详细地研究选定的样品。

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