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A novel bioinformatics strategy for searching industrially useful genome resources from metagenomic sequence libraries.

机译:从宏基因组序列文库中搜索工业上有用的基因组资源的新型生物信息学策略。

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摘要

Although remarkable progress in metagenomic sequencing of various environmental samples has been made, large numbers of fragment sequences have been registered in the international DNA databanks, primarily without information on gene function and phylotype, and thus with limited usefulness. Industrial useful biological activity is often carried out by a set of genes, such as those constituting an operon. In this connection, metagenomic approaches have a weakness because sets of the genes are usually split up, since the sequences obtained by metagenome analyses are fragmented into 1-kb or much shorter segments. Therefore, even when a set of genes responsible for an industrially useful function is found in one metagenome library, it is usually difficult to know whether a single genome harbors the entire gene set or whether different genomes have individual genes. By modifying Self-Organizing Map (SOM), we previously developed BLSOM for oligonucleotide composition, which allowed classification (self-organization) of sequence fragments according to genomes. Because BLSOM could reassociate genomic fragments according to genomes, BLSOM may ameliorate the abovementioned weakness of metagenome analyses. Here, we have developed a strategy for clustering of metagenomic sequences according to phylotypes and genomes, by testing a gene set contributing to environment preservation.
机译:尽管在各种环境样品的宏基因组测序中取得了显着进展,但国际DNA数据库中已注册了大量片段序列,主要是没有基因功能和系统型的信息,因此用途有限。工业上有用的生物活性通常由一组基因来进行,例如构成操纵子的那些基因。在这方面,宏基因组学方法有一个弱点,因为通常将基因组分开,因为通过后基因组分析获得的序列被片段化为1kb或更短的片段。因此,即使在一个元基因组文库中发现了一组具有工业实用功能的基因,通常也很难知道单个基因组是否包含整个基因组,或者不同的基因组是否具有单个基因。通过修改自组织图(SOM),我们先前开发了用于寡核苷酸组成的BLSOM,该方法可根据基因组对序列片段进行分类(自组织)。因为BLSOM可以根据基因组重新关联基因组片段,所以BLSOM可以改善上述的元基因组分析的缺点。在这里,我们通过测试有助于保护环境的基因组,根据系统型和基因组开发了一种宏基因组序列聚类的策略。

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