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Gene Prediction by Multiple Spliced Alignment

机译:通过多重剪接比对的基因预测

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With recent advances in sequencing technologies, a huge amount of DNA sequences become available year after year. In order to obtain useful information on these sequences, we need to process them in search of biologically meaningful regions. The genes are amongst the most important regions of a genome and the task of locating them in a DNA of interest is called the gene prediction problem. This problem can be addressed in several ways, and one of the most promising methods relies on homology information between the genomic DNA and previous annotated sequences (proteins, cDNAs and ESTs). In this paper we generalize a traditional formulation of the gene prediction problem and use this new formulation in the development of three gene identification tools. All these programs were tested on a benchmark of 240 human genomic sequences and the results obtained compare favorably with those achieved by other gene prediction tools available in the literature.
机译:随着测序技术的最新发展,每年都有大量的DNA序列可用。为了获得有关这些序列的有用信息,我们需要对其进行处理以寻找生物学上有意义的区域。基因是基因组中最重要的区域之一,将它们定位在目标DNA中的任务称为基因预测问题。这个问题可以通过几种方式解决,最有前途的方法之一是依靠基因组DNA与先前注释的序列(蛋白质,cDNA和EST)之间的同源性信息。在本文中,我们概括了基因预测问题的传统形式,并在三种基因识别工具的开发中使用了这种新形式。所有这些程序均以240个人类基因组序列为基准进行了测试,所获得的结果与文献中提供的其他基因预测工具所获得的结果相比具有优势。

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