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Death by a thousand cuts: the challenges and diverse landscape of lignocellulosic hydrolysate inhibitors

机译:一千人死亡:木质纤维素水解产物抑制剂的挑战和多样化前景

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摘要

Lignocellulosic hydrolysate (LCH) inhibitors are a large class of bioactive molecules that arise from pretreatment, hydrolysis, and fermentation of plant biomass. These diverse compounds reduce lignocellulosic biofuel yields by inhibiting cellular processes and diverting energy into cellular responses. LCH inhibitors present one of the most significant challenges to efficient biofuel production by microbes. Development of new strains that lessen the effects of LCH inhibitors is an economically favorable strategy relative to expensive detoxification methods that also can reduce sugar content in deconstructed biomass. Systems biology analyses and metabolic modeling combined with directed evolution and synthetic biology are successful strategies for biocatalyst development, and methods that leverage state-of-the-art tools are needed to overcome inhibitors more completely. This perspective considers the energetic costs of LCH inhibitors and technologies that can be used to overcome their drain on conversion efficiency. We suggest academic and commercial research groups could benefit by sharing data on LCH inhibitors and implementing “translational biofuel research.”
机译:木质纤维素水解产物(LCH)抑制剂是一大类生物活性分子,它们来自植物生物质的预处理,水解和发酵。这些不同的化合物通过抑制细胞过程并将能量转移到细胞反应中来降低木质纤维素生物燃料的产量。 LCH抑制剂是微生物有效生产生物燃料的最重大挑战之一。相对于昂贵的解毒方法而言,开发能减轻LCH抑制剂作用的新菌株是一种经济上有利的策略,该方法也可以降低解构生物质中的糖含量。系统生物学分析和代谢建模与定​​向进化和合成生物学相结合是生物催化剂开发的成功策略,需要利用最先进工具的方法来更完全地克服抑制剂。该观点考虑了LCH抑制剂和可用于克服其转换效率消耗的技术的能源成本。我们建议学术和商业研究小组可以通过共享有关LCH抑制剂的数据并实施“转化性生物燃料研究”而受益。

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