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Designer biomass for next-generation biorefineries: leveraging recent insights into xylan structure and biosynthesis

机译:用于下一代生物档的设计师生物量:利用最近的思想洞察克朗结构和生物合成

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摘要

Abstract Xylans are the most abundant noncellulosic polysaccharides in lignified secondary cell walls of woody dicots and in both primary and secondary cell walls of grasses. These polysaccharides, which comprise 20–35% of terrestrial biomass, present major challenges for the efficient microbial bioconversion of lignocellulosic feedstocks to fuels and other value-added products. Xylans play a significant role in the recalcitrance of biomass to degradation, and their bioconversion requires metabolic pathways that are distinct from those used to metabolize cellulose. In this review, we discuss the key differences in the structural features of xylans across diverse plant species, how these features affect their interactions with cellulose and lignin, and recent developments in understanding their biosynthesis. In particular, we focus on how the combined structural and biosynthetic knowledge can be used as a basis for biomass engineering aimed at developing crops that are better suited as feedstocks for the bioconversion industry.
机译:摘要Xylans是木质分枝叶番荔枝次级近亲墙中最丰富的非纤维素多糖和草丛中的初级和次级细胞壁。这些多糖包含20-35%的陆地生物量,对木质纤维素原料的有效微生物生物转化产生了主要挑战,以燃料和其他增值产品。 Xylans在生物质的重核中发挥着重要作用,降解了生物量,其生物转化需要与用于代谢纤维素的那些不同的代谢途径。在本文中,我们讨论了不同植物物种的Xylans结构特征的关键差异,这些特征如何影响它们与纤维素和木质素的相互作用以及最近理解其生物合成的发展。特别是,我们专注于如何将组合的结构和生物合成知识用作旨在为生物量工程的基础为旨在制定的作物,这些作物更适合于生物转化行业的原料。

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