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Biosynthesis and Regulation of Wheat Amylose and Amylopectin from Proteomic and Phosphoproteomic Characterization of Granule-binding Proteins

机译:颗粒结合蛋白的蛋白质组和磷酸化蛋白质组学表征小麦直链淀粉和支链淀粉的生物合成与调控

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摘要

Waxy starch has an important influence on the qualities of breads. Generally, grain weight and yield in waxy wheat (Triticum aestivum L.) are significantly lower than in bread wheat. In this study, we performed the first proteomic and phosphoproteomic analyses of starch granule-binding proteins by comparing the waxy wheat cultivar Shannong 119 and the bread wheat cultivar Nongda 5181. These results indicate that reduced amylose content does not affect amylopectin synthesis, but it causes significant reduction of total starch biosynthesis, grain size, weight and grain yield. Two-dimensional differential in-gel electrophoresis identified 40 differentially expressed protein (DEP) spots in waxy and non-waxy wheats, which belonged mainly to starch synthase (SS) I, SS IIa and granule-bound SS I. Most DEPs involved in amylopectin synthesis showed a similar expression pattern during grain development, suggesting relatively independent amylose and amylopectin synthesis pathways. Phosphoproteome analysis of starch granule-binding proteins, using TiO2 microcolumns and LC-MS/MS, showed that the total number of phosphoproteins and their phosphorylation levels in ND5181 were significantly higher than in SN119, but proteins controlling amylopectin synthesis had similar phosphorylation levels. Our results revealed the lack of amylose did not affect the expression and phosphorylation of the starch granule-binding proteins involved in amylopectin biosynthesis.
机译:蜡质淀粉对面包的品质有重要影响。通常,蜡质小麦(Triticum aestivum L.)的粒重和单产显着低于面包小麦。在这项研究中,我们通过比较蜡质小麦品种山农119和面包小麦品种农大5181,对淀粉颗粒结合蛋白进行了首次蛋白质组和磷酸化蛋白质组分析。这些结果表明,直链淀粉含量降低不会影响支链淀粉的合成,但会导致显着降低了淀粉的生物合成总量,粒度,重量和谷物产量。二维差异凝胶电泳鉴定了蜡质和非蜡质小麦中的40个差异表达蛋白(DEP)点,它们主要属于淀粉合酶(SS)I,SS IIa和颗粒结合SSI。大多数DEP与支链淀粉有关。在谷物发育过程中,合成显示出相似的表达模式,表明相对独立的直链淀粉和支链淀粉合成途径。使用TiO2微柱和LC-MS / MS对淀粉颗粒结合蛋白进行磷酸化蛋白质组分析,结果表明ND5181中的磷酸化蛋白总数及其磷酸化水平显着高于SN119,但控制支链淀粉合成的蛋白质具有相似的磷酸化水平。我们的结果表明,直链淀粉的缺乏并不影响支链淀粉生物合成中涉及的淀粉颗粒结合蛋白的表达和磷酸化。

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