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Comparative genomics study of inverted repeats in bacteria.

机译:细菌中反向重复序列的比较基因组学研究。

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Motivation: Comparative genomics provides a powerful way to investigate regularities and differences observed at DNA level across species. Here we study the number and location of inverted repeats occurring in complete genomes of bacteria. Inverted repeats are compatible with the formation of hairpin structures in the messenger RNA. Some of these structures are known to be rho-independent intrinsic terminators. Results: We investigate the number of inverted repeats observed in 37 complete genomes of bacteria. The number of inverted repeats observed is much higher than expected using Markovian models of DNA sequences in most of the eubacteria. By using the information annotated in the genomes we discover that in most of the eubacteria the inverted repeats of stem length longer than 8 nucleotides preferentially locate near the 3' end of the nearest coding regions. We also show that IRs characterized by large values of the stem length locate preferentially in short non-coding regions bounded by two 3' ends of convergent genes. By using the program TransTerm recently introduced to predict transcription terminators in bacterial genomes, we conclude that only a part of the observed inverted repeats fullfils the model requirements characterizing rho-independent termination in several genomes. Availability: http://lagash.dft.unipa.it/IR.html Contact: mantegna
机译:动机:比较基因组学为研究物种间DNA水平上的规律性和差异提供了一种有力的方法。在这里,我们研究了细菌完整基因组中发生的反向重复序列的数量和位置。反向重复序列与信使RNA中发夹结构的形成相容。这些结构中的一些已知是不依赖于rho的固有终止子。结果:我们调查了在细菌的37个完整基因组中观察到的反向重复序列的数量。在大多数真细菌中,观察到的反向重复数比使用DNA序列的马尔可夫模型所预期的要高得多。通过使用基因组中标注的信息,我们发现在大多数真细菌中,茎长超过8个核苷酸的反向重复序列优先位于最接近的编码区3'端附近。我们还显示,特征在于茎长度大值的IR优先位于由收敛基因的两个3'末端界定的短非编码区域。通过使用最近引入的TransTerm程序来预测细菌基因组中的转录终止子,我们得出的结论是,仅观察到的反向重复序列的一部分完全满足了表征几个基因组中不依赖于rho终止的模型要求。可用性:http://lagash.dft.unipa.it/IR.html联系人:mantegna

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