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首页> 外文期刊>Nucleic Acids Research >A space-efficient and accurate method for mapping and aligning cDNA sequences onto genomic sequence.
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A space-efficient and accurate method for mapping and aligning cDNA sequences onto genomic sequence.

机译:一种节省空间的准确方法,可将cDNA序列定位和比对到基因组序列上。

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摘要

The mapping and alignment of transcripts (cDNA, expressed sequence tag or amino acid sequences) onto a genomic sequence is a fundamental step for genome annotation, including gene finding and analyses of transcriptional activity, alternative splicing and nucleotide polymorphisms. As DNA sequence data of genomes and transcripts are accumulating at an unprecedented rate, steady improvement in accuracy, speed and space requirement in the computational tools for mapping/alignment is desired. We devised a multi-phase heuristic algorithm and implemented it in the development of the stand-alone computer program Spaln (space-efficient spliced alignment). Spaln is reasonably fast and space efficient; it requires <1 Gb of memory to map and align >120 000 Unigene sequences onto the unmasked whole human genome with a conventional computer, finishing the job in <6 h. With artificially introduced noise of various levels, Spaln significantly outperforms other leading alignment programs currently available with respect to the accuracy of mapped exon-intron structures. This performance is achieved without extensive learning procedures to adjust parameter values to a particular organism. According to the handiness and accuracy, Spaln may be used for studies on a wide area of genome analyses.
机译:转录本(cDNA,表达的序列标签或氨基酸序列)在基因组序列上的定位和比对是基因组注释的基本步骤,包括基因发现和转录活性分析,可变剪接和核苷酸多态性。随着基因组和转录物的DNA序列数据以前所未有的速度积累,期望用于绘图/比对的计算工具中准确性,速度和空间要求的稳定提高。我们设计了一种多阶段启发式算法,并将其用于独立计算机程序Spaln(高效空间拼接对齐)的开发中。 Spaln相当快且节省空间;它需要不到1 Gb的内存,才能使用传统计算机将> 120 000 Unigene序列映射和比对到未掩盖的整个人类基因组上,从而在6小时内完成工作。在映射的外显子-内含子结构的准确性方面,由于人为引入的各种水平的噪声,Spaln明显优于目前可用的其他领先比对程序。无需大量的学习程序即可针对特定生物调整参数值即可实现此性能。根据方便性和准确性,Spaln可用于广泛的基因组分析研究。

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