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DNA free energy-based promoter prediction and comparative analysis of arabidopsis and rice genomes

机译:基于DNA自由能的启动子预测和拟南芥和水稻基因组的比较分析

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The cis-regulatory regions on DNA serve as binding sites for proteins such as transcription factors and RNA polymerase. The combinatorial interaction of these proteins plays a crucial role in transcription initiation, which is an important point of control in the regulation of gene expression. We present here an analysis of the performance of an in silico method for predicting cisregulatory regions in the plant genomes of Arabidopsis (Arabidopsis thaliana) and rice (Oryza sativa) on the basis of free energy of DNA melting. For protein-coding genes, we achieve recall and precision of 96% and 42% for Arabidopsis and 97% and 31% for rice, respectively. For noncoding RNA genes, the program gives recall and precision of 94% and 75% for Arabidopsis and 95% and 90% for rice, respectively. Moreover, 96% of the false-positive predictions were located in noncoding regions of primary transcripts, out of which 20% were found in the first intron alone, indicating possible regulatory roles. The predictions for orthologous genes from the two genomes showed a good correlation with respect to prediction scores and promoter organization. Comparison of our results with an existing program for promoter prediction in plant genomes indicates that our method shows improved prediction capability.
机译:DNA上的顺式调节区充当蛋白质(例如转录因子和RNA聚合酶)的结合位点。这些蛋白质的组合相互作用在转录起始中起关键作用,这是调控基因表达的重要控制点。我们在此介绍一种计算机模拟方法的性能,该方法可根据DNA融解的自由能预测拟南芥(Arabidopsis thaliana)和水稻(Oryza sativa)的植物基因组中的调控区。对于蛋白质编码基因,拟南芥的召回率和准确度分别为96%和42%,水稻为97%和31%。对于非编码RNA基因,该程序对拟南芥的回收率和准确度分别为94%和75%,对水稻为95%和90%。此外,有96%的假阳性预测位于初级转录本的非编码区,其中20%仅在第一个内含子中发现,表明可能具有调控作用。来自两个基因组的直系同源基因的预测在预测分数和启动子组织方面显示出良好的相关性。我们的结果与植物基因组中启动子预测的现有程序的比较表明,我们的方法显示出提高的预测能力。

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