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Multimethod approach to understand the assembly of cellulose fibrils in the biosynthesis of bacterial cellulose

机译:多立方化学方法来了解细菌纤维素生物合成中纤维素原纤维组装的方法

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The production of controlled bacterial cellulose structures for various applications requires a better understanding on the mechanism of cellulose biosynthesis as well as proper tools for structural characterization of the materials. In this work, bacterial celluloses synthesized by an Asaia bogorensis strain known to produce fine cellulose fibrils and a commonly used Komagataeibacter xylinus strain were characterized using a comprehensive set of methods covering multiple levels of the hierarchical structure. FT-IR spectroscopy and x-ray diffraction were used to analyse the crystal structure and crystallite dimensions, whereas scanning and transmission electron microscopy, atomic force microscopy, and small-angle x-ray and neutron scattering were employed to obtain information on the higher-level fibrillar structures. All methods yielded results consistent with the A. bogorensis cellulose fibrils being thinner than the K. xylinus fibrils on both the level of individual cellulose microfibrils and bundles or ribbons thereof, even though the exact values determined for the lateral fibril dimensions depended slightly on the method and sample preparation. Particularly, the width of microfibril bundles determined by the microscopy methods differed due to shrinkage and preferred orientation caused by drying, whereas the microfibril diameter remained unaffected. The results were used to understand the biological origin of the differences between the two bacterial celluloses.
机译:用于各种应用的受控细菌纤维素结构的生产需要更好地了解纤维素生物合成的机制以及材料表征的适当工具。在这项工作中,通过覆盖多个层次结构的综合方法,以覆盖多水平的分层结构的综合方法,以众所周知的含有细菌菌生物菌株合成的细菌纤维素和常用的Komagataibacter木糖菌株。使用FT-IR光谱和X射线衍射来分析晶体结构和微晶尺寸,而扫描和透射电子显微镜,原子力显微镜和小角度X射线和中子散射被用来获得更高的信息水平纤维状结构。所有方法都产生了与A. Bogorensis纤维素原纤维的结果一致,这些纤维素纤维纤维在单个纤维素微纤维和束或束或带的束或丝带的水平上较薄,即使在该方法上略微依赖于横向原纤维尺寸的精确值和样品制备。特别地,通过显微镜方法确定的微纤维束的宽度由于由干燥引起的收缩和优选的取向而不同,而微纤维直径保持不受影响。结果用于了解两种细菌纤维素之间的差异的生物来源。

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