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An Integrated Transcriptome and Proteome Analysis Reveals New Insights into Russeting of Bagging and Non-Bagging Golden Delicious Apple

机译:整合的转录组和蛋白质组分析揭示了套袋和无套袋金黄色苹果的新见解

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摘要

Apple skin russeting naturally occurs in many varieties, particularly in “Golden Delicious” and its pedigree, and is regarded as a non-invasive physiological disorder partly caused by excessive deposition of lignin. However, the understanding of its molecular mechanism is still limited. In this study, we used iTRAQ (isobaric tags for relative and absolute quantitation) and RNA-seq to detect the changes in the expression levels of genes and proteins in three developmental stages of russeting formation, in russeted (non-bagging) and non-russeted (bagging) skin of “Golden Delicious” apple. 2856 differentially expressed genes and 942 differentially expressed proteins in the comparison groups were detected at the transcript level and protein level, respectively. A correlation analysis of the transcriptomics and proteomics data revealed that four genes (MD03G1059200, MD08G1009200, MD17G1092400, and MD17G1225100) involved in lignin biosynthesis are significant changed during apple russeting formation. Additionally, 92 transcription factors, including 4 LIM transcription factors, may be involved in apple russeting formation. Among them, one LIM transcription factor (MD15G1068200) was capable of binding to the PAL-box like (CCACTTGAGTAC) element, which indicated it was potentially involved in lignin biosynthesis. This study will provide further views on the molecular mechanisms controlling apple russeting formation.
机译:苹果皮肤变态自然发生在许多品种中,特别是在“金冠”及其谱系中,被认为是一种非侵入性生理疾病,部分原因是木质素沉积过多。但是,对其分子机制的理解仍然有限。在这项研究中,我们使用iTRAQ(等压标记进行相对和绝对定量)和RNA-seq检测了在赤褐色(非袋装)和非赤褐色(非袋装)三个发育阶段的基因和蛋白质表达水平的变化。褐色(袋装)“金冠”苹果皮。比较组分别在转录水平和蛋白质水平检测到2856个差异表达基因和942个差异表达蛋白。转录组学和蛋白质组学数据的相关性分析显示,参与木质素生物合成的四个基因(MD03G1059200,MD08G1009200,MD17G1092400和MD17G1225100)在苹果赤褐色形成过程中发生了显着变化。此外,苹果赤褐色形成可能涉及92个转录因子,包括4个LIM转录因子。其中,一种LIM转录因子(MD15G1068200)能够与PAL-box like(CCACTTGAGTAC)元件结合,这表明它可能参与了木质素的生物合成。这项研究将提供有关控制苹果赤褐色形成的分子机制的进一步观点。

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