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Formation of Semi-compound C-Type Starch Granule in High-Amylose Rice Developed by Antisense RNA Inhibition of Starch-Branching Enzyme

机译:反义RNA抑制淀粉酶的研究在高直链淀粉米中形成半化合物C型淀粉颗粒

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Cereal starch granules with high-amylose and resistant starch (RS) always show irregular morphology and special crystalline structure, but their formation during grain development is not yet clear. In our previous studies, we had generated a transgenio rice line (TRS) enriched vyith amylose, and RS, which contained semi-compound starch showing a C-type crystalline structure. In this study, the formation of semi-compound C-type starch granule during TRS endosperm development was carefully investigated with light, scanning electron, and transmission electron microscopes and X-ray powder diffraction. The results showed that the TRS starch subgranules, each with a central hilum, were individually initiated in amyloplast and showed an A-type crystal at the early stage of starch granule development, which was similar to that in its wild type. However, with the endosperm development, the amylose content in TRS endosperm starch increased and the B-type starch crystal was deposited in the periphery of subgranules; then, the adjacent subgranules fused together and finally formed a continuous outer layer band surrounding the entire circumference of the starch granule. Accordingly, a mechanistic model for the formation of semi-compound C-type starch granules is proposed.
机译:具有高直链淀粉和抗性淀粉(RS)的谷物淀粉颗粒始终显示出不规则的形态和特殊的晶体结构,但是它们在谷物发育过程中的形成尚不清楚。在我们以前的研究中,我们已经生成了富含转基因维维直链淀粉的转基因水稻品系(TRS)和RS,其中包含显示C型晶体结构的半复合淀粉。在这项研究中,通过光,扫描电子和透射电子显微镜以及X射线粉末衍射,仔细研究了TRS胚乳发育过程中半复合C型淀粉颗粒的形成。结果表明,每个都具有中央门的TRS淀粉亚颗粒是在淀粉质体中单独引发的,并且在淀粉颗粒发育的早期显示出A型晶体,这与野生型相似。然而,随着胚乳的发育,TRS胚乳淀粉中的直链淀粉含量增加,B型淀粉晶体沉积在亚颗粒的外围;然后,相邻的亚颗粒融合在一起,最终形成围绕淀粉颗粒整个圆周的连续外层带。因此,提出了形成半复合C型淀粉颗粒的机理模型。

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