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A high-quality genome assembly from a single, field-collected spotted lanternfly (Lycorma delicatula) using the PacBio Sequel II system

机译:使用PacBio Sequel II系统,从单个现场采集的斑点灯笼蝇(Lycorma delicatula)进行高质量的基因组组装。

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Background A high-quality reference genome is an essential tool for applied and basic research on arthropods. Long-read sequencing technologies may be used to generate more complete and contiguous genome assemblies than alternate technologies; however, long-read methods have historically had greater input DNA requirements and higher costs than next-generation sequencing, which are barriers to their use on many samples. Here, we present a 2.3 Gb de novo genome assembly of a field-collected adult female spotted lanternfly ( Lycorma delicatula ) using a single Pacific Biosciences SMRT Cell. The spotted lanternfly is an invasive species recently discovered in the northeastern United States that threatens to damage economically important crop plants in the region. Results The DNA from 1 individual was used to make 1 standard, size-selected library with an average DNA fragment size of ~20 kb. The library was run on 1 Sequel II SMRT Cell 8M, generating a total of 132 Gb of long-read sequences, of which 82 Gb were from unique library molecules, representing ~36× coverage of the genome. The assembly had high contiguity (contig N50 length = 1.5 Mb), completeness, and sequence level accuracy as estimated by conserved gene set analysis (96.8% of conserved genes both complete and without frame shift errors). Furthermore, it was possible to segregate more than half of the diploid genome into the 2 separate haplotypes. The assembly also recovered 2 microbial symbiont genomes known to be associated with L. delicatula , each microbial genome being assembled into a single contig. Conclusions We demonstrate that field-collected arthropods can be used for the rapid generation of high-quality genome assemblies, an attractive approach for projects on emerging invasive species, disease vectors, or conservation efforts of endangered species.
机译:背景技术高质量的参考基因组是节肢动物应用和基础研究的重要工具。与替代技术相比,长期阅读测序技术可用于生成更完整和连续的基因组装配。然而,长期以来,与下一代测序相比,长读方法具有更高的输入DNA要求和更高的成本,这阻碍了它们在许多样品中的使用。在这里,我们介绍了使用单个Pacific Biosciences SMRT细胞采集的现场采集的成年雌斑灯笼虫(Lycorma delicatula)的2.3 Gb de novo基因组。斑灯笼虫是最近在美国东北部发现的一种入侵物种,有可能损害该地区具有重要经济意义的农作物。结果用1个人的DNA制成1个标准的,大小选择的文库,平均DNA片段大小约为20 kb。该文库在1个Sequel II SMRT Cell 8M上运行,产生了总计132 Gb的长读序列,其中82 Gb来自独特的文库分子,代表了约36倍的基因组覆盖范围。如保守基因集分析所估计的那样,该装配体具有高连续性(重叠群N50长度= 1.5 Mb),完整性和序列水平准确性(96.8%的保守基因完整且无移码错误)。此外,有可能将一半以上的二倍体基因组分离为2个独立的单倍型。大会还回收了2个已知与纤毛乳杆菌相关的微生物共生体基因组,每个微生物基因组被组装成一个重叠群。结论我们证明,田间收集的节肢动物可用于快速生成高质量的基因组装配体,这是针对新兴入侵物种,疾病媒介或濒危物种保护工作的有吸引力的方法。

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