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反义 RNA 抑制淀粉分支酶对 C 型高直链淀粉水稻淀粉颗粒形态结构和异质体分布的修饰。

Granule structure and distribution of allomorphs in C-type high-amylose rice starch granule modified by antisense RNA inhibition of starch branching enzyme.

机构信息

College of Bioscience and Biotechnology, Yangzhou University, Yangzhou 225009, China.

出版信息

J Agric Food Chem. 2010 Nov 24;58(22):11946-54. doi: 10.1021/jf103412d. Epub 2010 Oct 29.

Abstract

C-type starch, which is a combination of both A-type and B-type crystal starch, is usually found in legumes and rhizomes. We have developed a high-amylose transgenic line of rice (TRS) by antisense RNA inhibition of starch branching enzymes. The starch in the endosperm of this TRS was identified as typical C-type crystalline starch, but its fine granular structure and allomorph distribution remained unclear. In this study, we conducted morphological and spectroscopic studies on this TRS starch during acid hydrolysis to determine the distribution of A- and B-type allomorphs. The morphology of starch granules after various durations of acid hydrolysis was compared by optical microscopy, scanning electron microscopy, and transmission electron microscopy. The results showed that amorphous regions were located at the center part of TRS starch subgranules. During acid hydrolysis, starch was degraded from the interior of the subgranule to the outer surface, while the peripheral part of the subgranules and the surrounding band of the starch granule were highly resistant to acid hydrolysis. The spectroscopic changes detected by X-ray powder diffraction, 13C cross-polarization magic-angle spinning NMR, and attenuated total reflectance Fourier transform infrared showed that the A-type allomorph was hydrolyzed more rapidly than the B-type, and that the X-ray diffraction profile gradually changed from a native C-type to a CB-type with increasing hydrolysis time. Our results showed that, in TRS starch, the A-type allomorph was located around the amorphous region, and was surrounded by the B-type allomorph located in the peripheral region of the subgranules and the surrounding band of the starch granule. Thus, the positions of A- and B-type allomorphs in the TRS C-type starch granule differ markedly from those in C-type legume and rhizome starch.

摘要

C 型淀粉是 A 型和 B 型晶淀粉的结合体,通常存在于豆类和块茎中。我们通过反义 RNA 抑制淀粉分支酶,开发了一种高直链淀粉转基因水稻(TRS)。该 TRS 胚乳中的淀粉被鉴定为典型的 C 型结晶淀粉,但它的细颗粒结构和变体分布尚不清楚。在这项研究中,我们对 TRS 淀粉在酸水解过程中的形态和光谱进行了研究,以确定 A 型和 B 型变体的分布。通过光学显微镜、扫描电子显微镜和透射电子显微镜比较了酸水解不同时间后淀粉颗粒的形态。结果表明,无定形区域位于 TRS 淀粉亚颗粒的中心部分。在酸水解过程中,淀粉从亚颗粒的内部降解到外表面,而亚颗粒的外围部分和淀粉颗粒的周围带对酸水解具有很强的抵抗力。X 射线粉末衍射、13C 交叉极化魔角旋转 NMR 和衰减全反射傅里叶变换红外光谱检测到的光谱变化表明,A 型变体比 B 型变体水解更快,随着水解时间的增加,X 射线衍射谱逐渐从天然 C 型转变为 CB 型。我们的结果表明,在 TRS 淀粉中,A 型变体位于无定形区域周围,被位于亚颗粒外围区域和淀粉颗粒周围带的 B 型变体包围。因此,TRS C 型淀粉颗粒中 A 型和 B 型变体的位置与 C 型豆类和块茎淀粉中的位置明显不同。

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