首页> 外文期刊>Current opinion in biotechnology >Exploration of natural biomass utilization systems (NBUS) for advanced biofuel - from systems biology to synthetic design. (Special Issue: Energy biotechnology - environmental biotechnology.)
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Exploration of natural biomass utilization systems (NBUS) for advanced biofuel - from systems biology to synthetic design. (Special Issue: Energy biotechnology - environmental biotechnology.)

机译:探索用于高级生物燃料的天然生物利用系统(NBUS)-从系统生物学到合成设计。 (特刊:能源生物技术-环境生物技术。)

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摘要

Efficient degradation and utilization of lignocellulosic biomass remains a challenge for sustainable and affordable biofuels. Various natural biomass utilization systems (NBUS) evolved the capacity to combat the recalcitrance of plant cell walls. The study of these NBUS could enable the development of efficient and cost-effective biocatalysts, microorganisms, and bioprocesses for biofuels and bioproducts. Here, we reviewed the recent research progresses for several NBUS, ranging from single cell microorganisms to consortiums such as cattle rumen and insect guts. These studies aided the discovery of biomass-degrading enzymes and the elucidation of the evolutionary and functional relevance in these systems. In particular, advances in the next generation 'omics' technologies offered new opportunities to explore NBUS in a high-throughput manner. Systems biology helped to facilitate the rapid biocatalyst discovery and detailed mechanism analysis, which could in turn guide the reverse design of engineered microorganisms and bioprocesses for cost-effective and efficient biomass conversion.
机译:木质纤维素生物质的有效降解和利用仍然是可持续和负担得起的生物燃料的挑战。各种天然生物质利用系统(NBUS)进化了抵抗植物细胞壁顽固性的能力。对这些NBUS的研究可以促进开发高效且具有成本效益的生物催化剂,微生物以及生物燃料和生物产品的生物过程。在这里,我们回顾了几种NBUS的最新研究进展,涉及从单细胞微生物到牛瘤胃和昆虫肠道等财团。这些研究有助于发现生物质降解酶,并阐明这些系统中进化和功能的相关性。尤其是,下一代“组学”技术的进步为以高通量方式探索NBUS提供了新的机会。系统生物学有助于促进生物催化剂的快速发现和详细的机理分析,进而可以指导工程微生物和生物过程的逆向设计,以实现经济高效的生物质转化。

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