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Comparative transcriptome analysis of aerial and subterranean pods development provides insights into seed abortion in peanut

机译:空中和地下荚果发育的比较转录组分析为了解花生种子流产提供了见识

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摘要

The peanut is a special plant for its aerial flowering but subterranean fructification. The failure of peg penetration into the soil leads to form aerial pod and finally seed abortion. However, the mechanism of seed abortion during aerial pod development remains obscure. Here, a comparative transcriptome analysis between aerial and subterranean pods at different developmental stages was produced using a customized NimbleGen microarray representing 36,158 unigenes. By comparing 4 consecutive time-points, totally 6,203 differentially expressed genes, 4,732 stage-specific expressed genes and 2,401 specific expressed genes only in aerial or subterranean pods were identified in this study. Functional annotation showed their mainly involvement in biosynthesis, metabolism, transcription regulation, transporting, stress response, photosynthesis, signal transduction, cell division, apoptosis, embryonic development, hormone response and light signaling, etc. Emphasis was focused on hormone response, cell apoptosis, embryonic development and light signaling relative genes. These genes might function as potential candidates to provide insights into seed abortion during aerial pod development. Ten candidate genes were validated by Realtime RT-PCR. Additionally, consistent with up-regulation of auxin response relative genes in aerial pods, endogenous IAA content was also significantly increased by HPLC analysis. This study will further provide new molecular insight that auxin and auxin response genes potentially contribute to peanut seed and pod development.
机译:花生是一种特殊的植物,因其空中开花而地下果实化。钉子渗透到土壤中失败会导致形成空中吊舱并最终导致种子流产。但是,空中吊舱发育过程中种子流产的机制仍然不清楚。在这里,使用代表36,158个单基因的定制NimbleGen微阵列,在不同发育阶段的空中和地下豆荚之间进行了比较转录组分析。通过比较四个连续的时间点,仅在空中或地下荚中鉴定出总共6,203个差异表达基因,4732个阶段特异性表达基因和2,401个特异性表达基因。功能注释显示它们主要参与生物合成,代谢,转录调节,运输,应激反应,光合作用,信号转导,细胞分裂,凋亡,胚胎发育,激素反应和光信号传导等。重点是激素反应,细胞凋亡,胚胎发育和光信号相关基因。这些基因可能充当潜在的候选物,以提供对空中吊舱发育过程中种子流产的见解。通过实时RT-PCR验证了十个候选基因。另外,与空中豆荚中植物生长素应答相关基因的上调一致,HPLC分析也显着增加了内源IAA含量。这项研究将进一步提供新的分子见解,即生长素和生长素应答基因可能有助于花生种子和豆荚的发育。

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