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An iTRAQ-Based Proteomics Approach to Clarify the Molecular Physiology of Somatic Embryo Development in Prince Rupprechts Larch (Larix principis-rupprechtii Mayr)

机译:一种基于iTRAQ的蛋白质组学方法阐明了鲁普雷希特王子的落叶松(Larix principis-rupprechtii Mayr)中体细胞胚胎发育的分子生理学。

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摘要

Prince Rupprecht's larch (Larix principis-rupprechtii Mayr) is a native high-value forest tree species in North China whose clonal propagation through somatic embryogenesis (SE) has the potential to rapidly capture the benefits of breeding or genetic engineering programs and to improve raw material uniformity and quality. To date, research has focused on clarifying the molecular mechanism of SE, but proteomic studies are still in the early stages. In this study, isobaric tags for relative and absolute quantitation (iTRAQ) analysis was performed on three developmental stages of SE in L. principis-rupprechtii in an attempt to identify a wide range of proteins that are regulated differentially during this process. Proteins were extracted and analyzed from the pro-embryogenic mass (PEM), globular embryo (GE), and cotyledon embryo (CE) stages of embryo development. We detected 503 proteins in total and identified 96 proteins expressed differentially during different developmental stages. The identified proteins were analyzed further to provide information about their expression patterns and functions during SE. Four clusters of proteins based on shared expression profiles were generated. Functional analysis showed that proteins involved in primary metabolism, phosphorylation, and oxidation reduction were upregulated during somatic embryo development. This work provides novel insights into the process of larch embryo development in vitro and a basis for further study of the biological process and opportunities for practical application of this knowledge.
机译:Rupprecht王子的落叶松(Larix principis-rupprechtii Mayr)是中国北方的本地高价值林木树种,其通过体细胞胚发生(SE)进行克隆繁殖具有迅速捕捉育种或基因工程计划的好处并改善原材料的潜力。均匀性和质量。迄今为止,研究集中在阐明SE的分子机制,但蛋白质组学研究仍处于早期阶段。在这项研究中,对L. principis-rupprechtii的SE的三个发育阶段进行了相对和绝对定量(iTRAQ)分析的同量异位标签,以试图鉴定在此过程中差异调节的多种蛋白质。从胚胎发育的前胚发生质量(PEM),球状胚(GE)和子叶胚(CE)阶段提取并分析蛋白质。我们总共检测到503种蛋白质,并鉴定了96种在不同发育阶段差异表达的蛋白质。对鉴定出的蛋白质进行进一步分析,以提供有关其在SE期间的表达模式和功能的信息。基于共享表达谱产生了四个蛋白质簇。功能分析表明,参与初级代谢,磷酸化和氧化还原的蛋白质在体细胞胚胎发育过程中被上调。这项工作提供了对落叶松体外胚胎发育过程的新颖见解,并为进一步研究生物学过程提供了基础,并为该知识的实际应用提供了机会。

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