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同步辐射傅里叶变换红外和拉曼光谱为拟南芥花茎维管束组织提供了独特的光谱特征。

Synchrotron FTIR and Raman spectroscopy provide unique spectral fingerprints for Arabidopsis floral stem vascular tissues.

机构信息

Institut Jean-Pierre Bourgin, INRA, AgroParisTech, CNRS, Université Paris-Saclay,Versailles, France.

Synchrotron SOLEIL, Ligne SMIS, L'Orme des Merisiers, Gif sur Yvette, France.

出版信息

J Exp Bot. 2019 Feb 5;70(3):871-884. doi: 10.1093/jxb/ery396.

Abstract

Cell walls are highly complex structures that are modified during plant growth and development. For example, the development of phloem and xylem vascular cells, which participate in the transport of sugars and water as well as providing support, can be influenced by cell-specific wall composition. Here, we used synchrotron radiation-based Fourier-transform infrared (SR-FTIR) and Raman spectroscopy to analyse the cell wall composition of floral stem vascular tissues of wild-type Arabidopsis and the double-mutant sweet11-1 sweet12-1, which has impaired sugar transport. The SR-FTIR spectra showed that in addition to modified xylem cell wall composition, phloem cell walls in the double-mutant line were characterized by modified hemicellulose composition. Combining Raman spectroscopy with a classification and regression tree (CART) method identified combinations of Raman shifts that could distinguish xylem vessels and fibers. In addition, the disruption of the SWEET11 and SWEET12 genes impacted on xylem wall composition in a cell-specific manner, with changes in hemicelluloses and cellulose observed at the xylem vessel interface. These results suggest that the facilitated transport of sugars by transporters that exist between vascular parenchyma cells and conducting cells is important in ensuring correct phloem and xylem cell wall composition.

摘要

细胞壁是高度复杂的结构,在植物生长和发育过程中会发生变化。例如,韧皮部和木质部维管束细胞的发育,它们参与糖和水的运输以及提供支撑,可以受到细胞壁组成的影响。在这里,我们使用基于同步辐射的傅里叶变换红外(SR-FTIR)和拉曼光谱来分析野生型拟南芥和双突变体 sweet11-1 sweet12-1 的花茎维管组织的细胞壁组成,该双突变体的糖运输受损。SR-FTIR 光谱表明,除了木质部细胞壁组成的改变外,双突变体系的韧皮部细胞壁还表现出半纤维素组成的改变。将拉曼光谱与分类和回归树(CART)方法相结合,可以识别出可以区分木质部血管和纤维的拉曼位移组合。此外,SWEET11 和 SWEET12 基因的破坏以细胞特异性的方式影响木质部细胞壁组成,在木质部血管界面观察到半纤维素和纤维素的变化。这些结果表明,存在于维管束薄壁细胞和导管细胞之间的转运蛋白对糖的易化运输对于确保正确的韧皮部和木质部细胞壁组成很重要。

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