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Proteome reference maps of vegetative tissues in pea. An investigation of nitrogen mobilization from leaves during seed filling

机译:豌豆中营养组织的蛋白质组参考图。种子充实过程中叶片氮素迁移的研究

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A proteomic approach was used to analyze protein changes during nitrogen mobilization (N mobilization) from leaves to filling seeds in pea (Pisum sativum). First, proteome reference maps were established for mature leaves and stems. They displayed around 190 Coomassie Blue-stained spots with pIs from 4 to 7. A total of 130 spots were identified by mass spectrometry as corresponding to 80 different proteins implicated in a variety of cellular functions. Although the leaf proteome map contained more abundant spots, corresponding to proteins involved in energy/carbon metabolism, than the stem map, their comparison revealed a highly similar protein profile. Second, the leaf proteome map was used to analyze quantitative variations in leaf proteins during N mobilization. Forty percent of the spots showed significant changes in their relative abundance in the total protein extract. The results confirmed the importance of Rubisco as a source of mobilizable nitrogen, and suggested that in pea leaves the rate of degradation of Rubisco may vary throughout N mobilization. Correlated with the loss of Rubisco was an increase in relative abundance of chloroplastic protease regulatory subunits. Concomitantly, the relative abundance of some proteins related to the photosynthetic apparatus (Rubisco activase, Rubisco-binding proteins) and of several chaperones increased. A role for these proteins in the maintenance of a Rubisco activation state and in the PSII repair during the intense proteolytic activity within the chloroplasts was proposed. Finally, two 14-3-3-like proteins, with a potential regulatory role, displayed differential expression patterns during the massive remobilization of nitrogen.
机译:蛋白质组学方法用于分析豌豆(Pisum sativum)从叶片到填充种子的氮动员(N动员)期间的蛋白质变化。首先,为成熟的叶子和茎建立蛋白质组参考图。他们展示了约190个考马斯蓝染色斑点,pI值为4至7。通过质谱法鉴定出总共130个斑点,它们对应于80种涉及多种细胞功能的蛋白质。尽管叶片蛋白质组图谱比茎部图谱包含更多的丰富斑点(对应于参与能量/碳代谢的蛋白质),但它们的比较显示出高度相似的蛋白质谱。其次,叶片蛋白质组图谱用于分析N动员期间叶片蛋白质的定量变化。 40%的斑点在总蛋白提取物中显示出相对丰度的显着变化。结果证实了Rubisco作为可移动氮源的重要性,并表明豌豆叶片中Rubisco的降解速率可能在整个N迁移过程中都不同。与Rubisco损失相关的是叶绿体蛋白酶调节亚基的相对丰度增加。随之而来的是,与光合作用相关的某些蛋白质(橡胶活化酶,鲁比斯科结合蛋白)和一些伴侣蛋白的相对丰度增加了。提出了在叶绿体内部强烈的蛋白水解活性过程中这些蛋白质在维持Rubisco活化状态和PSII修复中的作用。最后,具有潜在调节作用的两个14-3-3-like蛋白在氮大量迁移过程中表现出差异表达模式。

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