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rrnDB: documenting the number of rRNA and tRNA genes in bacteria and archaea.

机译:rrnDB:记录细菌和古细菌中rRNA和tRNA基因的数量。

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A dramatic exception to the general pattern of single-copy genes in bacterial and archaeal genomes is the presence of 1-15 copies of each ribosomal RNA encoding gene. The original version of the Ribosomal RNA Database (rrnDB) cataloged estimates of the number of 16S rRNA-encoding genes; the database now includes the number of genes encoding each of the rRNAs (5S, 16S and 23S), an internally transcribed spacer region, and the number of tRNA genes. The rrnDB has been used largely by microbiologists to predict the relative rate at which microbial populations respond to favorable growth conditions, and to interpret 16S rRNA-based surveys of microbial communities. To expand the functionality of the rrnDB (http://ribosome.mmg.msu.edu/rrndb/index.php), the search engine has been redesigned to allow database searches based on 16S rRNA gene copy number, specific organisms or taxonomic subsets of organisms. The revamped database also computes average gene copy numbers for any collection of entries selected. Curation tools now permit rapid updates, resulting in an expansion of the database to include data for 785 bacterial and 69 archaeal strains. The rrnDB continues to serve as the authoritative, curated source that documents the phylogenetic distribution of rRNA and tRNA genes in microbial genomes.
机译:细菌和古细菌基因组中单拷贝基因一般模式的一个显着例外是每个核糖体RNA编码基因存在1-15个拷贝。核糖体RNA数据库(rrnDB)的原始版本对16S rRNA编码基因的数量进行了分类。数据库现在包括编码每个rRNA(5S,16S和23S)的基因数量,内部转录的间隔区以及tRNA基因的数量。 rrnDB已被微生物学家广泛用于预测微生物种群对有利生长条件做出响应的相对速率,并解释基于16S rRNA的微生物群落调查。为了扩展rrnDB(http://ribosome.mmg.msu.edu/rrndb/index.php)的功能,搜索引擎已经过重新设计,可以基于16S rRNA基因拷贝数,特定生物或分类学子集进行数据库搜索生物。修改后的数据库还为所选条目的任何集合计算平均基因拷贝数。现在,管理工具允许快速更新,从而扩展了数据库,以包含785个细菌菌株和69个古细菌菌株的数据。 rrnDB继续作为权威的,有组织的资料来记录微生物基因组中rRNA和tRNA基因的系统发育分布。

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