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下一代测序魔法布丁:一种以纳米孔为主导的澳大利亚商业淡水小龙虾长读长基因组组装方法

The NGS Magic Pudding: A Nanopore-Led Long-Read Genome Assembly for the Commercial Australian Freshwater Crayfish, .

作者信息

Austin Christopher M, Croft Laurence J, Grandjean Frederic, Gan Han Ming

机构信息

Deakin Genomics Centre, Deakin University, Geelong, VIC, Australia.

Centre for Integrative Ecology, School of Life and Environmental Sciences, Deakin University, Geelong, VIC, Australia.

出版信息

Front Genet. 2022 Jan 19;12:695763. doi: 10.3389/fgene.2021.695763. eCollection 2021.

Abstract

, the yabby, is an iconic Australian freshwater crayfish species, which, similar to other major invertebrate groups, is grossly under-represented in genomic databases. The yabby is also the principal commercial freshwater crustacean species in Australia subject to explotation via inland fisheries and aquaculture. To address the genomics knowledge gap for this species and explore cost effective and efficient methods for genome assembly, we generated 106.8 gb of Nanopore reads and performed a long-read only assembly of the genome. On a mini-server configured with an ultra-fast swap space, the assembly took 131 h (∼5.5 days). Genome polishing with 126.3 gb of PCR-Free Illumina reads generated an assembled genome size of 3.3 gb (74.6% BUSCO completeness) with a contig N of 80,900 bp, making it the most contiguous for freshwater crayfish genome assemblies. We found an unusually large number of cellulase genes within the yabby genome which is relevant to understanding the nutritional biology, commercial feed development, and ecological role of this species and crayfish more generally. These resources will be useful for genomic research on freshwater crayfish and our methods for rapid and super-efficient genome assembly will have wide application.

摘要

螯虾是澳大利亚一种具有代表性的淡水小龙虾物种,与其他主要无脊椎动物类群一样,在基因组数据库中的代表性严重不足。螯虾也是澳大利亚主要的商业淡水甲壳类物种,可通过内陆渔业和水产养殖进行开发利用。为了填补该物种在基因组学方面的知识空白,并探索经济高效的基因组组装方法,我们生成了106.8GB的纳米孔读数,并对该基因组进行了仅基于长读长的组装。在配置了超快速交换空间的小型服务器上,该组装耗时131小时(约5.5天)。用126.3GB的无PCR的Illumina读数进行基因组抛光,得到了一个3.3GB的组装基因组大小(BUSCO完整性为74.6%),重叠群N50为80,900bp,使其成为淡水小龙虾基因组组装中最连续的。我们在螯虾基因组中发现了异常大量的纤维素酶基因,这与理解该物种以及更广泛意义上的小龙虾的营养生物学、商业饲料开发和生态作用相关。这些资源将有助于淡水小龙虾的基因组研究,我们快速且超高效的基因组组装方法将有广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d1e/8807398/bacb320d3377/fgene-12-695763-g001.jpg

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