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Using comparative genome analysis to identify problems in annotated microbial genomes

机译:使用比较基因组分析来识别注释微生物基因组的问题

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Genome annotation is a tedious task that is mostly done by automated methods; however, the accuracy of these approaches has been questioned since the beginning of the sequencing era. Genome annotation is a multilevel process, and errors can emerge at different stages: during sequencing, as a result of gene-calling procedures, and in the process of assigning gene functions. Missed or wrongly annotated genes differentially impact different types of analyses. Here we discuss and demonstrate how the methods of comparative genome analysis can refine annotations by locating missing orthologues. We also discuss possible reasons for errors and show that the second-generation annotation systems, which combine multiple gene-calling programs with similarity-based methods, perform much better than the first annotation tools. Since old errors may propagate to the newly sequenced genomes, we emphasize that the problem of continuously updating popular public databases is an urgent and unresolved one. Due to the progress in genome-sequencing technologies, automated annotation techniques will remain the main approach in the future. Researchers need to be aware of the existing errors in the annotation of even well-studied genomes, such as Escherichia coli, and consider additional quality control for their results.
机译:基因组注释是一种繁琐的任务,主要由自动化方法完成;然而,自测序时代开始以来,这些方法的准确性得到了质疑。基因组注释是一种多级过程,并且误差可以在不同的阶段出现:在测序期间,由于基因呼叫程序,以及分配基因函数的过程。错过或错误注释的基因差异地影响了不同类型的分析。在这里,我们讨论并展示比较基因组分析的方法是如何通过定位缺失的正交学来细化注释。我们还讨论了错误的可能原因,并表明第二代呼出程序以相似性的方法组合多个基因呼叫程序,比第一个注释工具更好。由于旧错误可能传播到新序列的基因组,我们强调,不断更新流行的公共数据库的问题是紧急和未解决的问题。由于基因组排序技术的进展,自动注释技术将是未来的主要方法。研究人员需要了解甚至是学习的基因组的注释中存在的错误,例如大肠杆菌,并考虑其结果的额外质量控制。

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