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Comparison of macromolecular interactions in the cell walls of hardwood, softwood and maize by fluorescence and FTIR spectroscopy, differential polarization laser scanning microscopy and X-ray diffraction

机译:通过荧光和FTIR光谱,差偏振激光扫描显微镜和X射线衍射比较硬木,软木和玉米细胞壁中的大分子相互作用

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摘要

Interactions between macromolecules in the cell walls of different plant origin were compared, namely spruce wood (Picea omorika (Pančić) Purkiňe) as an example of softwood, maple wood (Acer platanoides L.) as a hardwood and maize stems (Zea mays L.) as a herbaceous plant from the grass family and widely used agricultural plant. Interactions of macromolecules in isolated cell walls from the three species were compared by using Fourier transform infrared spectroscopy, X-ray diffraction and fluorescence spectroscopy. Linear dichroism of the cell walls was observed by using differential polarization laser scanning microscope (DP-LSM), which provides information of macromolecular order. This method has not previously been used for comparison of the cell walls of various plant origins. It was shown that the maize cell walls have higher amount of hydrogen bonds that lead to more regular packing of cellulose molecules, simpler structure of lignin, and a higher crystallinity of the cell wall in relation to the walls of woody plants. DP-LSM and fluorescence spectroscopy results indicate that maize has simpler and more ordered structure than both woody species. The results of this work provide new data for comparison of the cell wall properties that may be important for selection of appropriate plant for possible applications as a source of biomass. This may be a contribution to the development of efficient deconstruction and separation technologies that enable release of sugar and aromatic compounds from the cell wall macromolecular structure. © 2015 Springer-Verlag Berlin Heidelberg
机译:比较了不同植物来源的细胞壁中大分子之间的相互作用,即以软木为例的云杉木材(Picea omorika(Pančić)Purkiňe),作为硬木的枫木(Acer platanoides L.)和玉米茎(Zea mays L. )作为草科的草本植物和广泛用于农业的植物。通过使用傅立叶变换红外光谱,X射线衍射和荧光光谱比较了三种物种中分离的细胞壁中大分子的相互作用。通过使用差分偏振激光扫描显微镜(DP-LSM)观察到细胞壁的线性二向色性,该信息提供了大分子有序信息。该方法以前尚未用于比较各种植物来源的细胞壁。结果表明,相对于木本植物,玉米细胞壁具有更高数量的氢键,这导致纤维素分子更规则地堆积,木质素的结构更简单以及细胞壁的结晶度更高。 DP-LSM和荧光光谱结果表明,与两种木本植物相比,玉米具有更简单,更有序的结构。这项工作的结果为细胞壁特性的比较提供了新数据,这对于选择合适的植物作为生物质来源的可能应用很重要。这可能有助于开发有效的解构和分离技术,从而使糖和芳香族化合物从细胞壁大分子结构中释放出来。 ©2015 Springer-Verlag Berlin Heidelberg

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