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De novo assembly of Dekkera bruxellensis: a multi technology approach using short and long-read sequencing and optical mapping

机译:Dekkera bruxellensis的从头组装:使用短读和长读测序和光学作图的多技术方法

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摘要

BackgroundIt remains a challenge to perform de novo assembly using next-generation sequencing (NGS). Despite the availability of multiple sequencing technologies and tools (e.g., assemblers) it is still difficult to assemble new genomes at chromosome resolution (i.e., one sequence per chromosome). Obtaining high quality draft assemblies is extremely important in the case of yeast genomes to better characterise major events in their evolutionary history. The aim of this work is two-fold: on the one hand we want to show how combining different and somewhat complementary technologies is key to improving assembly quality and correctness, and on the other hand we present a de novo assembly pipeline we believe to be beneficial to core facility bioinformaticians. To demonstrate both the effectiveness of combining technologies and the simplicity of the pipeline, here we present the results obtained using the Dekkera bruxellensis genome.
机译:背景技术使用下一代测序(NGS)进行从头组装仍然是一个挑战。尽管可以使用多种测序技术和工具(例如装配器),但仍然难以以染色体分辨率(即每个染色体一个序列)装配新的基因组。在酵母基因组的情况下,获得高质量的草图集对于确保更好地表征其进化史上的重大事件极为重要。这项工作的目的是双重的:一方面,我们要展示如何结合不同且互补的技术是提高装配质量和正确性的关键;另一方面,我们提出了我们认为是从头开始的装配流水线。对核心设施生物信息学家有利。为了证明组合技术的有效性和管道的简单性,在这里我们介绍使用Dekkera bruxellensis基因组获得的结果。

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