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利用双向电泳和电喷雾串联质谱对野生和栽培苋属种子进行比较蛋白质组学分析

Comparative Proteomic Analysis of Wild and Cultivated Amaranth Species Seeds by 2-DE and ESI-MS/MS.

作者信息

Bojórquez-Velázquez Esaú, Zamora-Briseño Jesus Alejandro, Barrera-Pacheco Alberto, Espitia-Rangel Eduardo, Herrera-Estrella Alfredo, Barba de la Rosa Ana Paulina

机构信息

Instituto Potosino de Investigación Científica y Tecnológica A. C., San Luis Potosí 78216, Mexico.

Red de Estudios Moleculares Avanzados, Campus III, Instituto de Ecología A. C., Xalapa 91073, Mexico.

出版信息

Plants (Basel). 2024 Sep 29;13(19):2728. doi: 10.3390/plants13192728.

Abstract

Amaranth is a promising staple food that produces seeds with excellent nutritional quality. Although cultivated species intended for grain production have interesting agronomic traits, relatively little is known about wild species, which can prosper in diverse environments and could be a rich genetic source for crop improvement. This work focuses on the proteomic comparison between the seeds of wild and cultivated amaranth species using polarity-based protein extraction and two-dimensional gel electrophoresis. Differentially accumulated proteins (DAPs) showed changes in granule-bound starch synthases and a wide range of 11S globulin isoforms. The electrophoretic profile of these proteins suggests that they may contain significant phosphorylation as post-translational modifications (PTMs), which were confirmed via immunodetection. These PTMs may impact the physicochemical functionality of storage proteins, with potential implications for seed agronomic traits and food system applications. Low-abundant DAPs with highly variable accumulation patterns are also discussed; these were involved in diverse molecular processes, such as genic regulation, lipid storage, and stress response.

摘要

苋属植物是一种很有前景的主食作物,其种子具有优异的营养品质。尽管用于谷物生产的栽培品种具有有趣的农艺性状,但对于能在多种环境中生长且可能是作物改良丰富遗传资源的野生品种,人们了解相对较少。这项工作聚焦于使用基于极性的蛋白质提取和二维凝胶电泳对野生和栽培苋属植物种子进行蛋白质组学比较。差异积累蛋白(DAPs)显示出颗粒结合型淀粉合酶和多种11S球蛋白亚型的变化。这些蛋白质的电泳图谱表明它们可能含有作为翻译后修饰(PTMs)的显著磷酸化,这通过免疫检测得到了证实。这些PTMs可能会影响贮藏蛋白的物理化学功能,对种子农艺性状和食品系统应用具有潜在影响。还讨论了具有高度可变积累模式的低丰度DAPs;它们参与了多种分子过程,如基因调控、脂质储存和应激反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/213a/11478449/5a3a1c527ae2/plants-13-02728-g001.jpg

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