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Prediction and large-scale analysis of primary operons in plastids reveals unique genetic features in the evolution of chloroplasts

机译:塑体初级操纵子的预测和大规模分析揭示了叶绿体的演变中的独特遗传特征

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摘要

While bacterial operons have been thoroughly studied, few analyses of chloroplast operons exist, limiting the ability to study fundamental elements of these structures and utilize them for synthetic biology. Here, we describe the creation of a plastome-specific operon database (link provided below) achieved by combining experimental tools and predictive modeling. Using a Reverse-Transcription-PCR based method and published data, we determined the transcription-state of 213 gene pairs from four plastomes of evolutionary distinct organisms. By analyzing sequence-based features computed for our dataset, we were able to highlight fundamental characteristics differentiating between operon pairs and non-operon pairs. These include an interesting tendency toward maintaining similar messenger RNA-folding profiles in operon gene pairs, a feature that failed to yield any informative separation in cyanobacteria, suggesting that it catches unique traits of operon gene expression, which have evolved post-endosymbiosis. Subsequently, we used this feature set to train a random-forest classifier for operon prediction. As our results demonstrate the ability of our predictor to obtain accurate (84%) and robust predictions on unlabeled datasets, we proceeded to building operon maps for 2018 sequenced plastids. Our database may now present new opportunities for promoting metabolic engineering and synthetic biology in chloroplasts.
机译:虽然已经彻底研究了细菌操纵子,但存在少量分析叶绿体操纵子,限制了研究这些结构的基本要素并利用它们的合成生物学的能力。这里,我们描述通过组合实验工具和预测建模来实现通过组合和预测建模而实现的塑料体特定的操纵子数据库(下面提供的链接。使用基于逆转录PCR的方法和公布数据,我们确定了来自进化不同生物的四个塑料的213基因对的转录状态。通过分析为我们数据集计算的基于序列的特征,我们能够突出显示Operon对和非操作on对之间的基本特征。这些包括在操纵子基因对中维持类似的信使RNA折叠曲线的有趣趋势,该特征未能在蓝藻中产生任何内容性分离,表明它捕获了术后患者基因表达的独特性状,这已经进化了后胚性后胚胎表达。随后,我们使用此功能设置为培训一个随机林分类器进行操作预测。由于我们的结果表明,我们的预测指标获得准确(84%)和对未标记数据集的强大预测,我们继续为2018序列的塑料构建操纵子地图。我们的数据库现在可以为促进叶绿体中的代谢工程和合成生物学提供新的机会。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第7期|共9页
  • 作者单位

    Tel Aviv Univ Sch Plant Sci &

    Food Secur George S Wise Fac Life Sci IL-69978 Tel Aviv Israel;

    Tel Aviv Univ Sch Plant Sci &

    Food Secur George S Wise Fac Life Sci IL-69978 Tel Aviv Israel;

    Tel Aviv Univ Sch Plant Sci &

    Food Secur George S Wise Fac Life Sci IL-69978 Tel Aviv Israel;

    Tel Aviv Univ Iby &

    Aladar Fleischman Fac Engn Dept Biomed Engn IL-6997801 Tel Aviv Israel;

    Tel Aviv Univ Sch Plant Sci &

    Food Secur George S Wise Fac Life Sci IL-69978 Tel Aviv Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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