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Building de novo reference genome assemblies of complex eukaryotic microorganisms from single nuclei

机译:从单一核的复杂真核微生物构建De Novo参考基因组组装

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The advent of novel sequencing techniques has unraveled a tremendous diversity on Earth. Genomic data allow us to understand ecology and function of organisms that we would not otherwise know existed. However, major methodological challenges remain, in particular for multicellular organisms with large genomes. Arbuscular mycorrhizal (AM) fungi are important plant symbionts with cryptic and complex multicellular life cycles, thus representing a suitable model system for method development. Here, we report a novel method for large scale, unbiased nuclear sorting, sequencing, and de novo assembling of AM fungal genomes. After comparative analyses of three assembly workflows we discuss how sequence data from single nuclei can best be used for different downstream analyses such as phylogenomics and comparative genomics of single nuclei. Based on analysis of completeness, we conclude that comprehensive de novo genome assemblies can be produced from six to seven nuclei. The method is highly applicable for a broad range of taxa, and will greatly improve our ability to study multicellular eukaryotes with complex life cycles.
机译:新型测序技术的出现已经解开了地球上的巨大多样性。基因组数据允许我们了解生物的生态和功能,以为我们不会知道存在。然而,主要方法论挑战尤其是具有大基因组的多细胞生物。丛枝菌根(AM)真菌是具有密码和复杂的多细胞寿命周期的重要植物共生,从而代表了一个合适的方法开发模型系统。在这里,我们报告了对AM真菌基因组的大规模,无偏见的核分类,测序和DE Novo组装的新方法。在三个装配工作流程的比较分析之后,我们讨论单核的序列数据如何最好用于不同的下游分析,例如单核的系统核糖组织和对比基因组学。基于完整性分析,我们得出结论,全面的De Novo基因组组件可以从六到七个核产生。该方法适用于广泛的分类群,并将大大提高我们研究具有复杂生命周期的多细胞真核生物的能力。

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