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首页> 外文期刊>Biomacromolecules >Cellulose Elementary Fibrils Assemble into Helical Bundles in Si Layer of Spruce Tracheid Wall
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Cellulose Elementary Fibrils Assemble into Helical Bundles in Si Layer of Spruce Tracheid Wall

机译:纤维素基本原纤维在云杉管胞壁的硅层中组装成螺旋束

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摘要

The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is considered to be the prime factor regulating the material characteristics of wood in micro to macro levels and the conversion of delignified wood fibers into various products. Specifically, the complex assembly of EFs in wood cell wall limits its swellability, solubility, and reactivity, for example, in dissolution of cellulose for regeneration of textile fibers, fibril separation for the manufacture of nanocellulose, and enzymatic hydrolysis of cellulose into sugars for their subsequent fermentation to various products, like ethanol for future fossil fuels replacement. Here cryo-transmission electron tomography was applied on ultrathin spruce wood sections to reveal the EF assembly in S-1 layer of the native cell wall. The resolution of these tomograms was then further enhanced by computational means. For the first time, cellulose in the intact cell wall was visualized to be assembled into helical bundles of several EFs, a structural feature that must have a significant impact on the swelling, accessibility, and solubility of woody biomass for its conversion into the aforementioned value added products.
机译:木材细胞壁中纤维素基本原纤维(EFs)的超微结构组织被认为是调控木材从微观到宏观材料特性以及脱木素木纤维转化为各种产品的主要因素。具体来说,EFs在木细胞壁中的复杂组装限制了其溶胀性、溶解度和反应性,例如,用于纺织纤维再生的纤维素溶解,用于制造纳米纤维素的原纤维分离,以及将纤维素酶水解成糖,以便随后发酵成各种产品,如用于未来化石燃料替代的乙醇。在这里,在超薄云杉木切片上应用冷冻透射电子断层扫描,以揭示天然细胞壁 S-1 层中的 EF 组装。然后通过计算手段进一步增强了这些断层扫描的分辨率。这是第一次,完整细胞壁中的纤维素被可视化为组装成几个EF的螺旋束,这一结构特征必须对木质生物质的膨胀、可及性和溶解性产生重大影响,才能转化为上述增值产品。

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