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豌豆淀粉的原子力显微镜:图像对比度的来源

Atomic force microscopy of pea starch: origins of image contrast.

作者信息

Ridout Michael J, Parker Mary L, Hedley Cliff L, Bogracheva Tatiana Y, Morris Victor J

机构信息

Institute of Food Research, Norwich Research Park, Colney, Norwich NR4 7UA, United Kingdom.

出版信息

Biomacromolecules. 2004 Jul-Aug;5(4):1519-27. doi: 10.1021/bm0499280.

Abstract

Atomic force microscopy (AFM) has been used to image the internal structure of pea starch granules. Starch granules were encased in a nonpenetrating matrix of rapid-set Araldite. Images were obtained of the internal structure of starch exposed by cutting the face of the block and of starch in sections collected on water. These images have been obtained without staining, or either chemical or enzymatic treatment of the granule. It has been demonstrated that contrast in the AFM images is due to localized absorption of water within specific regions of the exposed fragments of the starch granules. These regions swell, becoming "softer" and higher than surrounding regions. The images obtained confirm the "blocklet model" of starch granule architecture. By using topographic, error signal and force modulation imaging modes on samples of the wild-type pea starch and the high amylose r near-isogenic mutant, it has been possible to demonstrate differing structures within granules of different origin. These architectural changes provide a basis for explaining the changed appearance and functionality of the r mutant. The growth-ring structure of the granule is suggested to arise from localized "defects" in blocklet distribution within the granule. It is proposed that these defects are partially crystalline regions devoid of amylose.

摘要

原子力显微镜(AFM)已被用于对豌豆淀粉颗粒的内部结构进行成像。淀粉颗粒被包裹在快速固化的Araldite非穿透性基质中。通过切割块体表面暴露淀粉的内部结构,并对收集在水面上的切片中的淀粉进行成像。这些图像是在未对颗粒进行染色、化学或酶处理的情况下获得的。已经证明,AFM图像中的对比度是由于淀粉颗粒暴露片段的特定区域内水的局部吸收所致。这些区域膨胀,变得比周围区域“更软”且更高。获得的图像证实了淀粉颗粒结构的“小块模型”。通过对野生型豌豆淀粉和高直链淀粉近等基因突变体的样品使用形貌、误差信号和力调制成像模式,已能够证明不同来源颗粒内的不同结构。这些结构变化为解释r突变体外观和功能的改变提供了基础。颗粒的生长环结构被认为是由颗粒内小块分布的局部“缺陷”引起的。有人提出,这些缺陷是不含直链淀粉的部分结晶区域。

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