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Operon-based approach for the inference of rRNA and tRNA evolutionary histories in bacteria

机译:基于操纵子的rRNA和TRNA进化历史的研究方法

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In bacterial genomes, rRNA and tRNA genes are often organized into operons, i.e. segments of closely located genes that share a single promoter and are transcribed as a single unit. Analyzing how these genes and operons evolve can help us understand what are the most common evolutionary events affecting them and give us a better picture of ancestral codon usage and protein synthesis. We introduce BOPAL, a new approach for the inference of evolutionary histories of rRNA and tRNA genes in bacteria, which is based on the identification of orthologous operons. Since operons can move around in the genome but are rarely transformed (e.g. rarely broken into different parts), this approach allows for a better inference of orthologous genes in genomes that have been affected by many rearrangements, which in turn helps with the inference of more realistic evolutionary scenarios and ancestors. From our comparisons of BOPAL with other gene order alignment programs using simulated data, we have found that BOPAL infers evolutionary events and ancestral gene orders more accurately than other methods based on alignments. An analysis of 12 Bacillus genomes also showed that BOPAL performs just as well as other programs at building ancestral histories in a minimal amount of events.
机译:在细菌基因组中,rRNA和TRNA基因通常组织成用于操纵子,即密切定位的基因的分段,其共享单一启动子并作为单个单元转录。分析这些基因和操纵子如何发展可以帮助我们了解影响它们的最常见的进化事件,并让我们更好地了解祖传密码子使用和蛋白质合成。我们介绍了Bopal,一种新方法,用于在细菌中推动rRNA和TRNA基因的进化历史,这是基于矫正局部操纵子的鉴定。由于操纵子可以在基因组中移动,但很少转化(例如很少被破坏到不同的部位),这种方法允许更好地引起因许多重排受影响而受影响的基因组中的正非基因的推理,这反过来有助于推断更多现实的进化情景和祖先。从我们的Bopal比较使用模拟数据的其他基因订单对准程序,我们发现博波尔在基于对准的其他方法比其他方法更准确地进化进化事件和祖先的基因。对12个杆菌基因组的分析还表明,Bopal在最小的事件中建立祖先历史的其他程序也是如此。

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