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Complete, high-quality genomes from long-read metagenomic sequencing of two wolf lichen thalli reveals enigmatic genome architecture

机译:完全,高质量的基因组来自两只狼丽属植物的长读元素测序揭示了神秘的基因组结构

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Fungal genomes display incredible levels of complexity and diversity, and are exceptional study systems for genome evolution. Here we used the Oxford Nanopore MinION sequencing platform to generate high-quality fungal genomes from complex metagenomic samples of lichen thalli. We sequenced two wolf lichens using one flow cell per sample, generating 17.1 Gbps for Letharia lupina and 14.3 Gbps for Letharia columbiana. The resulting L. lupina genome is one of the most contiguous lichen genomes available to date, with 49.2 Mbp contained on 31 contigs. The L. columbiana genome, while less contiguous, is still relatively high quality, with 52.3 Mbp on a total of 161 contigs. Each thallus for both species contained multiple distinct haplotypes, a phenomenon that has rarely been empirically demonstrated. The Oxford Nanopore sequencing technologies are robust and effective when applied to complex symbioses, and have the potential to fundamentally transform our understanding of fungal genetics.
机译:真菌基因组呈现令人难以置信的复杂性和多样性,并且是基因组进化的特殊研究系统。在这里,我们使用牛津纳米孔沟测序平台,从地衣Zhalli复杂的梅泰群样品产生高质量的真菌基因组。我们使用每种样品使用一个流动池测序两只狼衣,为嗜血脂发生17.1 gbps,14.3 Gbps含有14.3 gbps。得到的L.Lupina Genome是迄今为止可用的最常见的地衣基因组之一,31种Contigs含有49.2MBp。 L. Columbiana Genome,而较少连续的,质量较少,总共161个Contigs的52.3 Mbp。两个物种的每个妊娠都包含多个不同的单倍型,这是一种很少经过经验证明的现象。牛津纳米孔测序技术在应用于复杂的共生时具有稳健且有效,并且有可能从根本上改变我们对真菌遗传学的理解。

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