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利用牛津纳米孔 PromethION 测序和 Hi-C 技术对绿鳍马面鲀进行染色体水平基因组组装。

Chromosome-level genome assembly of the greenfin horse-faced filefish (Thamnaconus septentrionalis) using Oxford Nanopore PromethION sequencing and Hi-C technology.

机构信息

Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao, China.

Laboratory for Marine Fisheries Science and Food Production Processes, Pilot National Laboratory for Marine Science and Technology (Qingdao), Qingdao, China.

出版信息

Mol Ecol Resour. 2020 Jul;20(4):1069-1079. doi: 10.1111/1755-0998.13183. Epub 2020 Jul 9.

Abstract

The greenfin horse-faced filefish, Thamnaconus septentrionalis, is a valuable commercial fish species that is widely distributed in the Indo-West Pacific Ocean. This fish has characteristic blue-green fins, rough skin and a spine-like first dorsal fin. Thamnaconus septentrionalis is of conservation concern because its population has declined sharply, and it is an important marine aquaculture fish species in China. Genomic resources for the filefish are lacking, and no reference genome has been released. In this study, the first chromosome-level genome of T. septentrionalis was constructed using nanopore sequencing and Hi-C technology. A total of 50.95 Gb polished nanopore sequences were generated and were assembled into a 474.31-Mb genome, accounting for 96.45% of the estimated genome size of this filefish. The assembled genome contained only 242 contigs, and the achieved contig N50 was 22.46 Mb, a surprisingly high value among all sequenced fish species. Hi-C scaffolding of the genome resulted in 20 pseudochromosomes containing 99.44% of the total assembled sequences. The genome contained 67.35 Mb of repeat sequences, accounting for 14.2% of the assembly. A total of 22,067 protein-coding genes were predicted, 94.82% of which were successfully annotated with putative functions. Furthermore, a phylogenetic tree was constructed using 1,872 single-copy orthologous genes, and 67 unique gene families were identified in the filefish genome. This high-quality assembled genome will be a valuable resource for a range of future genomic, conservation and breeding studies of T. septentrionalis.

摘要

青金梭子鱼,Thamnaconus septentrionalis,是一种分布广泛的印度洋-西太平洋地区的有价值的商业鱼类。这种鱼具有特征性的蓝绿色鳍、粗糙的皮肤和像脊椎一样的第一背鳍。青金梭子鱼受到保护关注,因为其种群数量急剧下降,并且是中国重要的海水养殖鱼类之一。该鱼的基因组资源缺乏,尚未发布参考基因组。在这项研究中,使用纳米孔测序和 Hi-C 技术构建了青金梭子鱼的第一个染色体水平基因组。总共生成了 50.95 Gb 抛光纳米孔序列,并将其组装成 474.31-Mb 基因组,占该青金梭子鱼估计基因组大小的 96.45%。组装的基因组仅包含 242 个 contigs,实现的 contig N50 为 22.46 Mb,在所有测序的鱼类中是一个非常高的值。基因组的 Hi-C 支架得到了 20 条假染色体,包含总组装序列的 99.44%。基因组含有 67.35 Mb 的重复序列,占组装序列的 14.2%。总共预测了 22067 个蛋白质编码基因,其中 94.82%成功地注释了可能的功能。此外,使用 1872 个单拷贝直系同源基因构建了系统发育树,并在青金梭子鱼基因组中鉴定了 67 个独特的基因家族。这个高质量的组装基因组将成为未来青金梭子鱼基因组学、保护和繁殖研究的宝贵资源。

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