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首页> 外文期刊>Phytochemistry >Distribution of lignin and its coniferyl alcohol and coniferyl aldehyde groups in Picea abies and Pinus sylvestris as observed by Raman imaging
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Distribution of lignin and its coniferyl alcohol and coniferyl aldehyde groups in Picea abies and Pinus sylvestris as observed by Raman imaging

机译:用拉曼成像法观察云杉和樟子松中木质素及其针叶醇和针叶醛基的分布

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Wood cell wall consists of several structural components, such as cellulose, hemicelluloses and lignin, whose concentrations vary throughout the cell wall. It is a composite where semicrystalline cellulose fibrils, acting as reinforcement, are bound together by amorphous hemicelluloses and lignin matrix. Understanding the distribution of these components and their functions within the cell wall can provide useful information on the biosynthesis of trees.Raman imaging enables us to study chemistry of cell wall without altering the structure by staining the sample or fractionating it. Raman imaging has been used to analyze distributions of lignin and cellulose, as well as the functional groups of lignin in wood.In our study, we observed the distribution of cellulose and lignin, as well as the amount of coniferyl alcohol and aldehyde groups compared to the total amount of lignin in pine (Pinus sylvestris) and spruce (Picea abies) wood samples. No significant differences could be seen in lignin and cellulose distribution between these samples, while clear distinction was observed in the distribution of coniferyl alcohols and coniferyl aldehyde in them. These results could provide valuable insight on how two similar wood species control biosynthesis of lignin differently during the differentiation of cell wall
机译:木质细胞壁由几种结构成分组成,例如纤维素,半纤维素和木质素,它们的浓度在整个细胞壁中都不同。它是一种复合材料,其中半结晶纤维素原纤维(用作增强材料)通过无定形半纤维素和木质素基质结合在一起。了解这些成分在细胞壁中的分布及其功能可以为树木的生物合成提供有用的信息。拉曼成像使我们能够研究细胞壁的化学性质,而无需通过对样品染色或分馏来改变结构。拉曼成像已用于分析木质素和纤维素的分布以及木质素在木材中的官能团。在我们的研究中,我们观察到纤维素和木质素的分布以及松柏油基醇和醛基的数量与松木(Pinus sylvestris)和云杉(Picea abies)木材样品中木质素的总量。在这些样品之间,木质素和纤维素的分布没有显着差异,而在其中的松柏醇和松柏醛的分布中观察到明显的区别。这些结果可以为两种相似的木材物种如何在细胞壁分化过程中不同地控制木质素的生物合成提供有价值的见解。

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