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首页> 外文期刊>Frontiers in Plant Science >Integrated Systems Biology Analysis of Transcriptomes Reveals Candidate Genes for Acidity Control in Developing Fruits of Sweet Orange ( Citrus sinensis L. Osbeck)
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Integrated Systems Biology Analysis of Transcriptomes Reveals Candidate Genes for Acidity Control in Developing Fruits of Sweet Orange ( Citrus sinensis L. Osbeck)

机译:转录组的综合系统生物学分析揭示了甜橙( Citrus sinensis L.Osbeck)果实发育中的酸度控制候选基因。

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Organic acids, such as citrate and malate, are important contributors for the sensory traits of fleshy fruits. Although their biosynthesis has been illustrated, regulatory mechanisms of acid accumulation remain to be dissected. To provide transcriptional architecture and identify candidate genes for citrate accumulation in fruits, we have selected for transcriptome analysis four varieties of sweet orange ( Citrus sinensis L. Osbeck) with varying fruit acidity, Succari (acidless), Bingtang (low acid), and Newhall and Xinhui (normal acid). Fruits of these varieties at 45 days post anthesis (DPA), which corresponds to Stage I (cell division), had similar acidity, but they displayed differential acid accumulation at 142 DPA (Stage II, cell expansion). Transcriptomes of fruits at 45 and 142 DPA were profiled using RNA sequencing and analyzed with three different algorithms (Pearson correlation, gene coexpression network and surrogate variable analysis). Our network analysis shows that the acid-correlated genes belong to three distinct network modules. Several of these candidate fruit acidity genes encode regulatory proteins involved in transport (such as AHA10), degradation (such as APD2) and transcription (such as AIL6) and act as hubs in the citrate accumulation gene networks. Taken together, our integrated systems biology analysis has provided new insights into the fruit citrate accumulation gene network and led to the identification of candidate genes likely associated with the fruit acidity control.
机译:有机酸(例如柠檬酸和苹果酸)是肉质水果感官特性的重要贡献者。尽管已经说明了它们的生物合成,但是酸积累的调节机制仍有待剖析。为了提供转录结构并鉴定水果中柠檬酸盐积累的候选基因,我们选择了四种具有不同水果酸度的甜橙(Citrus sinensis L.Osbeck),Succari(无酸),Bingtang(低酸)和Newhall进行转录组分析。和新会(正酸)。这些花品种在开花后45天(DPA)对应于阶段I(细胞分裂)的果实具有相似的酸度,但是它们在142 DPA表现出不同的酸积累(阶段II,细胞膨胀)。使用RNA测序对45和142 DPA水果的转录组进行分析,并使用三种不同的算法进行分析(Pearson相关,基因共表达网络和替代变量分析)。我们的网络分析表明,与酸相关的基因属于三个不同的网络模块。这些候选的水果酸度基因中的一些编码参与运输(例如AHA10),降解(例如APD2)和转录(例如AIL6)的调节蛋白,并在柠檬酸积累基因网络中充当枢纽。综上所述,我们的集成系统生物学分析为水果柠檬酸盐积累基因网络提供了新见解,并导致鉴定了可能与水果酸度控制相关的候选基因。

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