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开发高通量筛选系统,以鉴定能够提高糖释放的纤维素生物质、预处理方法和酶制剂。

Engineering of a high-throughput screening system to identify cellulosic biomass, pretreatments, and enzyme formulations that enhance sugar release.

机构信息

Chemical and Environmental Engineering Department, Center for Environmental Research and Technology, University of California Riverside, 92507, USA.

出版信息

Biotechnol Bioeng. 2010 Feb 1;105(2):231-8. doi: 10.1002/bit.22527.

Abstract

The recalcitrance of cellulosic biomass, the only abundant, sustainable feedstock for making liquid fuels, is a primary obstacle to low cost biological processing, and development of more easily converted plants and more effective enzymes would be of great benefit. Because no single parameter describes recalcitrance, superior variants can only be identified by measuring sugar release from plants subjected to pretreatment and enzymatic hydrolysis. However, genetic modifications of plants coupled with molecular engineering of deconstruction proteins and definition of pretreatment conditions create a very large sample set, and previous methods for biomass pretreatment at elevated temperatures and pressures prevented use of a fully integrated high-throughput (HTP) screening pipeline. Herein, we report on the engineering of a novel HTP pretreatment system employing a 96 well-plate format that withstands extreme pretreatment conditions for rapid screening of biomass-enzyme-pretreatment combinations. This includes the development of new approaches to steam heating and water quenching the system that result in much faster heat up and cool down than previously possible and show consistent temperature histories across the multiwell plate. Coupled pretreatment and enzymatic hydrolysis performance of the well plate pretreatment system is shown to be consistent among the many wells in the device and also with performance of conventional tubular reactors.

摘要

木质纤维素生物质的顽固性是生产液体燃料的唯一丰富、可持续的原料,这是低成本生物加工的主要障碍,开发更容易转化的植物和更有效的酶将是非常有益的。由于没有单一的参数可以描述顽固性,只有通过测量预处理和酶解后植物的糖释放量,才能确定具有优势的变体。然而,植物的遗传修饰与解构蛋白的分子工程以及预处理条件的定义相结合,创造了一个非常大的样本集,而以前在高温高压下进行生物质预处理的方法则阻止了使用完全集成的高通量(HTP)筛选管道。在这里,我们报告了一种新型 HTP 预处理系统的工程设计,该系统采用 96 孔板格式,可承受极端预处理条件,用于快速筛选生物质-酶-预处理组合。这包括开发新的蒸汽加热和水淬系统的方法,与以前相比,该方法使加热和冷却速度大大加快,并在多孔板上显示出一致的温度历史。该孔板预处理系统的预处理和酶解性能在设备的许多孔中是一致的,也与传统的管式反应器的性能一致。

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