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Automated Update, Revision, and Quality Control of the Maize Genome Annotations Using MAKER-P Improves the B73 RefGen_v3 Gene Models and Identifies New Genes

机译:使用MAKER-P的玉米基因组注释的自动更新,修订和质量控制,改进了B73 RefGen_v3基因模型并鉴定了新基因

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摘要

The large size and relative complexity of many plant genomes make creation, quality control, and dissemination of high-quality gene structure annotations challenging. In response, we have developed MAKER-P, a fast and easy-to-use genome annotation engine for plants. Here, we report the use of MAKER-P to update and revise the maize (Zea mays) B73 RefGen_v3 annotation build (5b+) in less than 3 h using the iPlant Cyberinfrastructure. MAKER-P identified and annotated 4,466 additional, well-supported protein-coding genes not present in the 5b+ annotation build, added additional untranslated regions to 1,393 5b+ gene models, identified 2,647 5b+ gene models that lack any supporting evidence (despite the use of large and diverse evidence data sets), identified 104,215 pseudogene fragments, and created an additional 2,522 noncoding gene annotations. We also describe a method for de novo training of MAKER-P for the annotation of newly sequenced grass genomes. Collectively, these results lead to the 6a maize genome annotation and demonstrate the utility of MAKER-P for rapid annotation, management, and quality control of grasses and other difficult-to-annotate plant genomes.
机译:许多植物基因组的大尺寸和相对复杂性使得创建,质量控制和传播高质量基因结构注释具有挑战性。作为回应,我们开发了MAKER-P,这是一种用于植物的快速,易于使用的基因组注释引擎。在这里,我们报告使用iPlant网络基础设施在不到3小时的时间内使用MAKER-P更新和修订了玉米(Zea mays)B73 RefGen_v3注释构建(5b +)。 MAKER-P识别并注释了5466种5b +注释构建中不存在的另外4466种受到良好支持的蛋白质编码基因,为1395种5b +基因模型添加了其他未翻译区域,鉴定了2647种5b +基因模型,这些模型缺乏任何支持证据(尽管使用了大量和各种证据数据集),鉴定了104,215个假基因片段,并创建了另外的2,522个非编码基因注释。我们还描述了MAKER-P从头训练的方法,用于注释新测序的草基因组。总而言之,这些结果导致了6a玉米基因组的注释,并证明了MAKER-P在草和其他难以注释的植物基因组的快速注释,管理和质量控制中的效用。

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