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首页> 外文期刊>Plant physiology >Estimation of polymer rigidity in cell walls of growing and nongrowing celery collenchyma by solid-state nuclear magnetic resonance in vivo.
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Estimation of polymer rigidity in cell walls of growing and nongrowing celery collenchyma by solid-state nuclear magnetic resonance in vivo.

机译:通过体内固态核磁共振估算正在生长的和未生长的芹菜细胞的细胞壁中的聚合物刚性。

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摘要

When the growth of a plant cell ceases, its walls become more rigid and lose the capacity to extend. Nuclear magnetic resonance relaxation methods were used to determine the molecular mobility of cell wall polymers in growing and nongrowing live celery (Apium graveolens) collenchyma. Decreased polymer mobility in nongrowing cell walls was detected through the 13C-nuclear magnetic resonance spectrum by decreases in the proton spin-spin relaxation time constant and in the intensity of a subspectrum corresponding to highly mobile pectins, which was obtained by a spectral editing technique based on cross-polarization rates. Flexible, highly methyl-esterified pectins decreased in relative quantity when growth ceased. A parallel increase in the net longitudinal orientation of cellulose microfibrils was detected in isolated cell walls by polarized Fourier-transformed infrared spectrometry.
机译:当植物细胞的生长停止时,其壁变得更加僵硬,失去了延伸的能力。核磁共振弛豫方法用于确定在生长和不生长的活芹菜(Apiumgravolens)结肠中细胞壁聚合物的分子迁移率。通过13C-核磁共振光谱,通过降低质子自旋自旋弛豫时间常数和对应于高度可移动果胶的亚谱的强度,可以检测到未生长的细胞壁中聚合物迁移率的降低,这是通过基于谱编辑技术的关于交叉极化率。停止增长时,柔性,高度甲基酯化的果胶的相对数量减少。通过偏振傅立叶变换红外光谱法在分离的细胞壁中检测到纤维素微纤维的净纵向取向平行增加。

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