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rrnDB: improved tools for interpreting rRNA gene abundance in bacteria and archaea and a new foundation for future development

机译:rrnDB:用于解释细菌和古细菌中rRNA基因丰度的改进工具,并为将来的开发奠定了新的基础

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Microbiologists utilize ribosomal RNA genes as molecular markers of taxonomy in surveys of microbial communities. rRNA genes are often co-located as part of an rrn operon, and multiple copies of this operon are present in genomes across the microbial tree of life. rrn copy number variability provides valuable insight into microbial life history, but introduces systematic bias when measuring community composition in molecular surveys. Here we present an update to the ribosomal RNA operon copy number database (rrnDB), a publicly available, curated resource for copy number information for bacteria and archaea. The redesigned rrnDB (http://rrndb.umms.med.umich.edu/) brings a substantial increase in the number of genomes described, improved curation, mapping of genomes to both NCBI and RDP taxonomies, and refined tools for querying and analyzing these data. With these changes, the rrnDB is better positioned to remain a comprehensive resource under the torrent of microbial genome sequencing. The enhanced rrnDB will contribute to the analysis of molecular surveys and to research linking genomic characteristics to life history.
机译:在微生物群落调查中,微生物学家利用核糖体RNA基因作为分类学的分子标记。 rRNA基因通常作为rrn操纵子的一部分位于同一位置,并且该操纵子的多个副本存在于整个生命树的基因组中。拷贝数变异性提供了微生物生活史的宝贵见解,但在分子调查中测量群落组成时引入了系统性偏差。在这里,我们提出了对核糖体RNA操纵子拷贝数数据库(rrnDB)的更新,该数据库是一种可公开获得的精选资源,用于细菌和古细菌的拷贝数信息。重新设计的rrnDB(http://rrndb.umms.med.umich.edu/)带来了所描述的基因组数量的大量增加,改进的管理,基因组到NCBI和RDP分类法的映射以及完善的查询和分析工具这些数据。通过这些更改,rrnDB可以更好地保持微生物基因组测序的洪流之下的综合资源。增强的rrnDB将有助于分子调查分析以及将基因组特征与生命史联系起来的研究。

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