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Significantly improving the quality of genome assemblies through curation

机译:通过策施显着提高基因组组件的质量

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摘要

Genome sequence assemblies provide the basis for our understanding of biology. Generating error-free assemblies is therefore the ultimate, but sadly still unachieved goal of a multitude of research projects. Despite the ever-advancing improvements in data generation, assembly algorithms and pipelines, no automated approach has so far reliably generated near error-free genome assemblies for eukaryotes. Whilst working towards improved datasets and fully automated pipelines, assembly evaluation and curation is actively used to bridge this shortcoming and significantly reduce the number of assembly errors. In addition to this increase in product value, the insights gained from assembly curation are fed back into the automated assembly strategy and contribute to notable improvements in genome assembly quality. We describe our tried and tested approach for assembly curation using gEVAL, the genome evaluation browser. We outline the procedures applied to genome curation using gEVAL and also our recommendations for assembly curation in a gEVAL-independent context to facilitate the uptake of genome curation in the wider community.
机译:基因组序列组件为我们对生物学的理解提供了基础。因此,生成无错误的组件是最终的,但可悲的是众多研究项目的未经解波的目标。尽管数据生成,组装算法和管道有持续的改进,但到目前为止,无差错的基因组组件没有自动化的方法。在改进的数据集和完全自动化的管道上工作,汇编评估和策择积极地用于弥合这种缺点并显着减少装配误差的数量。除了该产品值的增加外,从装配策核中获得的见解还被反馈回自动化组装策略,并有助于基因组装配质量的显着改善。我们描述了使用Geval,基因组评估浏览器的组装策疗的尝试和测试方法。我们概述了使用Geval应用于基因组策策的程序,以及我们在Geval的背景下的组装策策的建议,以促进更广泛社区的基因组策策。

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