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

生物 基因组 康蒂格 顺序装配 纳米孔测序 系统发育树 基因组大小 人口 基因组学 基因 遗传学 染色体 全基因组测序 参考基因组 进化生物学 基因表达 转录组 社会学 人口学
作者
Li Bian,Fenghui Li,Jianlong Ge,Pengfei Wang,Qing Chang,Shengnong Zhang,Jie Li,Changlin Liu,Kun Liu,Xintian Liu,Xuming Li,Siqing Chen,Siqing Chen,Changwei Shao,Zhishu Lin
出处
期刊:Molecular Ecology Resources [Wiley]
卷期号:20 (4): 1069-1079 被引量:53
标识
DOI:10.1111/1755-0998.13183
摘要

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.
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