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Intra-Sample Heterogeneity of Potato Starch Reveals Fluctuation of Starch-Binding Proteins According to Granule Morphology

机译:样品中淀粉的异质性根据颗粒形态揭示了淀粉结合蛋白的波动

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摘要

Starch granule morphology is highly variable depending on the botanical origin. Moreover, all investigated plant species display intra-tissular variability of granule size. In potato tubers, the size distribution of starch granules follows a unimodal pattern with diameters ranging from 5 to 100 µm. Several evidences indicate that granule morphology in plants is related to the complex starch metabolic pathway. However, the intra-sample variability of starch-binding metabolic proteins remains unknown. Here, we report on the molecular characterization of size-fractionated potato starch granules with average diameters of 14.2 ± 3.7 µm, 24.5 ± 6.5 µm, 47.7 ± 12.8 µm, and 61.8 ± 17.4 µm. In addition to changes in the phosphate contents as well as small differences in the amylopectin structure, we found that the starch-binding protein stoichiometry varies significantly according to granule size. Label-free quantitative proteomics of each granule fraction revealed that individual proteins can be grouped according to four distinct abundance patterns. This study corroborates that the starch proteome may influence starch granule growth and architecture and opens up new perspectives in understanding the dynamics of starch biosynthesis.
机译:淀粉颗粒的形态因植物来源而异。此外,所有调查的植物物种均显示出组织内颗粒大小的变异性。在马铃薯块茎中,淀粉颗粒的大小分布遵循单峰模式,直径范围为5至100 µm。一些证据表明植物中的颗粒形态与复杂的淀粉代谢途径有关。但是,淀粉结合代谢蛋白的样品内变异性仍然未知。在这里,我们报告了平均粒径为14.2±3.7 µm,24.5±6.5 µm,47.7±12.8 µm和61.8±17.4 µm的大小分级马铃薯淀粉颗粒的分子表征。除了磷酸盐含量的变化以及支链淀粉结构的细微差异外,我们发现淀粉结合蛋白的化学计量根据颗粒大小而显着变化。每个颗粒级分的无标记定量蛋白质组学表明,可以根据四个不同的丰度模式对单个蛋白质进行分组。这项研究证实了淀粉蛋白质组可能影响淀粉颗粒的生长和结构,并为了解淀粉生物合成的动力学开辟了新的前景。

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