细菌基因注释计算机方法的发展

Q1 Biochemistry, Genetics and Molecular Biology
Mikhail A. Golyshev, E. Korotkov
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引用次数: 1

摘要

在过去的几年里,对大量细菌基因组进行了测序。目前计算基因组学最重要的挑战之一是核酸序列的功能注释。在本研究中,我们提出了利用系统发育谱预测生物功能的计算方法和注释系统。通过寻找该基因的核苷酸序列与1204个参考基因组之间的相似性,并进一步估计发现的相似性的统计学意义,建立了该基因的系统发育图谱。利用已知功能基因的谱图预测新基因可能的功能和功能群。我们对来自104个细菌基因组的基因进行了功能注释,并将系统预测的功能与已知的功能进行了比较。对于已经被注释的基因,已知功能在63%的时间内与我们预测的功能匹配,并且在86%的时间内,已知功能在前五个预测功能中被发现。此外,我们的系统增加了19%的注释基因的份额。开发的系统可以用作当前注释系统的替代或补充系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developing of the Computer Method for Annotation of Bacterial Genes
Over the last years a great number of bacterial genomes were sequenced. Now one of the most important challenges of computational genomics is the functional annotation of nucleic acid sequences. In this study we presented the computational method and the annotation system for predicting biological functions using phylogenetic profiles. The phylogenetic profile of a gene was created by way of searching for similarities between the nucleotide sequence of the gene and 1204 reference genomes, with further estimation of the statistical significance of found similarities. The profiles of the genes with known functions were used for prediction of possible functions and functional groups for the new genes. We conducted the functional annotation for genes from 104 bacterial genomes and compared the functions predicted by our system with the already known functions. For the genes that have already been annotated, the known function matched the function we predicted in 63% of the time, and in 86% of the time the known function was found within the top five predicted functions. Besides, our system increased the share of annotated genes by 19%. The developed system may be used as an alternative or complementary system to the current annotation systems.
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来源期刊
Advances in Bioinformatics
Advances in Bioinformatics Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
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