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Direct Observation of Cell Wall Structure in Living Plant Tissues by Solid-State 13C NMR Spectroscopy

机译:固态13C NMR光谱法直接观察活植物组织中的细胞壁结构

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摘要

Solid-state 13C nuclear magnetic resonance (NMR) spectra of the following intact plant tissues were recorded by the crosspolarization magic-angle spinning technique: celery (Apium graveolens L.) collenchyma; carob bean (Ceratonia siliqua L.), fenugreek (Trigonella foenum-graecum L.), and nasturtium (Tropaeolum majus L.) endosperm; and lupin (Lupinus polyphyllus Lindl.) seed cotyledons. All these tissues had thickened cell walls which allowed them to withstand the centrifugal forces of magic angle spinning and which, except in the case of lupin seeds, dominated the NMR spectra. The celery collenchyma cell walls gave spectra typical of dicot primary cell walls. The carob bean and fenugreek seed spectra were dominated by resonances from galactomannans, which showed little sign of crystalline order. Resonances from β(1,4′)-d galactan were visible in the lupin seed spectrum, but there was much interference from protein. The nasturtium seed spectrum was largely derived from a xyloglucan, in which the conformation of the glucan core chain appeared to be intermediate between the solution form and solid forms of cellulose.
机译:通过交叉极化魔角旋转技术记录了以下完整植物组织的固态13C核磁共振波谱:芹菜(Apiumgravolens L.)角豆(Ceratonia siliqua L.),胡芦巴(Trigonella foenum-graecum L.)和金莲花(Tropaeolum majus L.)的胚乳;和羽扇豆(Lupinus polyphyllus Lindl。)种子子叶。所有这些组织都具有增厚的细胞壁,这使它们能够承受魔角旋转的离心力,并且除羽扇豆种子外,它们在NMR光谱中占主导地位。芹菜干细胞壁给出了双子叶植物原代细胞壁的典型光谱。角豆种子和胡芦巴种子的光谱以半乳甘露聚糖的共振为主,几乎没有结晶顺序的迹象。在羽扇豆种子光谱中可以看到β(1,4')-d半乳聚糖的共振,但是蛋白质产生了很大的干扰。旱金莲种子光谱主要来自木葡聚糖,其中葡聚糖核心链的构象似乎介于纤维素的溶液形式和固体形式之间。

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