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The kidney - An organ of critical importance in physiology

机译:肾脏-生理上至关重要的器官

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As the female reproductive part of a flower, the pistil consists of the ovary, style, and stigma, and is a critical organ for the process from pollen recognition to fertilization and seed formation. Previous studies on pollen-pistil interaction mainly focused on gene expression changes with comparative transcriptomics or proteomics method. However, studies on protein PTMs are still lacking. Here we report a phosphoproteomic study on mature pistil of rice. Using IMAC enrichment, hydrophilic interaction chromatography fraction and high-accuracy MS instrument (TripleTOF 5600), 2347 of high-confidence (Ascore ≥ 19, p ≤ 0.01), phosphorylation sites corresponding to 1588 phosphoproteins were identified. Among them, 1369 phosphorylation sites within 654 phosphoproteins were newly identified; 41 serine phosphorylation motifs, which belong to three groups: proline-directed, basophilic, and acidic motifs were identified after analysis by motif-X. Two hundred and one genes whose phosphopeptides were identified here showed tissue-specific expression in pistil based on information mining of previous microarray data.
机译:雌蕊作为花朵的雌性生殖部分,由子房,花柱和柱头组成,是从花粉识别到受精和种子形成过程的关键器官。以前关于花粉-雌蕊相互作用的研究主要集中在利用比较转录组学或蛋白质组学方法的基因表达变化上。但是,仍然缺乏关于蛋白质PTM的研究。在这里,我们报告了水稻成熟雌蕊的磷酸化蛋白质组学研究。使用IMAC富集,亲水相互作用色谱馏分和高精度MS仪器(TripleTOF 5600),获得2347个高可信度(Ascore≥19,p≤0.01),鉴定出1588个磷蛋白对应的磷酸化位点。其中,新发现654个磷蛋白中的1369个磷酸化位点;经基序-X分析后,鉴定出41个丝氨酸磷酸化基序,它们属于三类:脯氨酸定向,嗜碱性和酸性基序。根据先前微阵列数据的信息挖掘,此处鉴定出磷酸肽的201个基因在雌蕊中显示出组织特异性表达。

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