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Annotated Draft Genomes of Two Caddisfly Species Plectrocnemia conspersa CURTIS and Hydropsyche tenuis NAVAS (Insecta: Trichoptera)

机译:两种Caddisfly种类续蝇(Plectrocnemia consulta CURTIS)和Hydropsyche tenuis NAVAS的注释基因组草图(Insecta:Trichoptera)

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摘要

Members of the speciose insect order Trichoptera (caddisflies) provide important ecosystem services, for example, nutrient cycling through breaking down of organic matter. They are also of industrial interest due to their larval silk secretions. These form the basis for their diverse case-making behavior that allows them to exploit a wide range of ecological niches. Only five genomes of this order have been published thus far, with variable qualities regarding contiguity and completeness. A low-cost sequencing strategy, that is, using a single Oxford Nanopore flow cell per individual along with Illumina sequence reads was successfully used to generate high-quality genomes of two Trichoptera species, and . Of the de novo assembly methods compared, assembly of low coverage Nanopore reads (∼18×) and subsequent polishing with long reads followed by Illumina short reads (∼80–170× coverage) yielded the highest genome quality both in terms of contiguity and BUSCO completeness. The presented genomes are the shortest to date and extend our knowledge of genome size across caddisfly families. The genomic region that encodes for light (L)-chain fibroin, a protein component of larval caddisfly silk was identified and compared with existing L-fibroin gene clusters. The new genomic resources presented in this paper are among the highest quality Trichoptera genomes and will increase the knowledge of this important insect order by serving as the basis for phylogenomic and comparative genomic studies.
机译:特异翅目昆虫(鳞翅目)的成员提供重要的生态系统服务,例如,通过分解有机物质来进行营养循环。由于幼虫的丝状分泌物,它们也具有工业价值。这些构成了他们多样化的案例制作行为的基础,使他们能够利用各种生态位。迄今为止,仅公开了该顺序的五个基因组,其关于连续性和完整性的质量各不相同。一种低成本的测序策略,即每个人使用一个牛津纳米孔流通池以及Illumina的序列读数,已成功地用于产生两个鳞翅目物种的高质量基因组。在比较的从头组装方法中,组装低覆盖度的纳米孔读数(约18倍),随后进行长读数的抛光,然后进行Illumina短读数(约80-170倍的覆盖率),无论是在连续性还是在BUSCO方面均获得了最高的基因组质量完整性。提出的基因组是迄今为止最短的基因组,将我们的基因组大小知识扩展到了各个蝇科。确定了编码轻(L)链丝蛋白(幼虫鳞翅目丝蛋白的蛋白质成分)的基因组区域,并将其与现有的L-丝蛋白基因簇进行了比较。本文介绍的新的基因组资源属于最高品质的鳞翅目基因组,并将通过作为系统生物学和比较基因组研究的基础来增加对这一重要昆虫的认识。

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