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首页> 外文期刊>Journal of proteome research >Integrated Analysis of Protein Abundance, Transcript Level, and Tissue Diversity To Reveal Developmental Regulation of Maize
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Integrated Analysis of Protein Abundance, Transcript Level, and Tissue Diversity To Reveal Developmental Regulation of Maize

机译:综合分析蛋白质丰富,转录水平和组织多样性,揭示玉米发育调节

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The differentiation and subsequent development of plant tissues or organs are tightly regulated at multiple levels, including the transcriptional, posttranscriptional, translational, and posttranslational levels. Transcriptomes define many of the tissue-specific gene expression patterns in maize, and some key genes and their regulatory networks have been established at the transcriptional level. In this study, the sequential window acquisition of all theoretical spectra–mass spectrometry technique was employed as a quantitative proteome assay of four representative maize tissues, and a set of high-confidence proteins was identified. Integrated analysis of the proteome and transcriptome revealed that protein abundance was positively correlated with mRNA level with weak to moderate correlation coefficients, but the abundance of key proteins for function or architecture in a given tissue was closely tempospatially regulated at the transcription level. A subset of differentially expressed proteins, specifically tissue-specific highly expressed proteins, was identified, for example, reproductive structure and flower development-related proteins in tassel and ear, lipid and fatty acid biosynthetic process-related proteins in immature embryo, and inorganic substance and oxidation reduction responsive proteins in root, potentially revealing the physiology, morphology, and function of each tissue. Furthermore, we found many new proteins in specific tissues that were highly correlated with their mRNA levels, in addition to known key factors. These proteome data provide new perspective for understanding many aspects of maize developmental biology. Raw proteomics data are available via ProteomeXchange with identifier PXD008464.
机译:植物组织或器官的分化和随后的发育在多个水平下紧密调节,包括转录,后术,平移和后期水平。转录omes定义了玉米中的许多组织特异性基因表达模式,并且已经在转录水平上建立了一些关键基因及其调节网络。在该研究中,使用所有理论光谱 - 质谱技术的顺序窗口获取作为四种代表性玉米组织的定量蛋白质组测定,并鉴定了一组高置信蛋白。蛋白质组和转录组的综合分析表明,蛋白质丰度与mRNA水平呈正相关,与中等相关系数弱,但在给定组织中的功能或架构的零蛋白的丰度在转录水平处严密间隔地调节。鉴定了差异表达的蛋白质,特别是组织特异性高表达蛋白的子集,例如,在流苏和耳,脂质和脂肪酸生物合成过程相关蛋白质中的生殖结构和花卉发育相关蛋白质,在未成熟的胚胎中和无机物质和氧化还原响应蛋白质,潜在地揭示每个组织的生理学,形态和功能。此外,除了已知的关键因素之外,我们发现许多与其mRNA水平高度相关的特定组织中的许多新蛋白质。这些蛋白质组数据为了解玉米发育生物学的许多方面提供了新的视角。原始蛋白质组学数据可通过Proteomexchange提供标识符PXD008464。

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