Department of Life Science, Chung-Ang University, Seoul, 06974, Korea.
Department of Fisheries Science, Chonnam National University, Yeosu, 59626, Korea.
Sci Data. 2024 Aug 30;11(1):952. doi: 10.1038/s41597-024-03817-9.
In East Asia, anguillid eels are commercially important. However, unlike other species, they have not been successfully cultivated throughout their lifecycle. Facing population decline due to overharvesting and environmental pressures, the industry is turning to alternatives, such as Anguilla bicolor pacifica (short-finned eel). However, genomic data for short-finned eels are unavailable. Here, we present in-depth whole-genome sequencing results for short-finned eel obtained using two sequencing platforms (PacBio Revio, and Illumina). In this study, we achieved a highly contiguous genome assembly of the short-finned eel, comprising 19 pseudochromosomes encompassing 99.76% of the 1.087 Gb genome sequence with an N50 of 16.88 and 61.07 Mb from contig and scaffold, respectively. Transcripts from four different tissues led to the annotation of 23,095 protein-coding genes in the eel genome, 98.66% of which were functionally annotated. This high-quality genome assembly, along with the annotation data, provides a foundation for future functional genomic studies of short-finned eels.
东亚的鳗鲡是商业上重要的鱼类。然而,与其他物种不同,它们的整个生命周期都没有成功进行养殖。由于过度捕捞和环境压力,这些鱼类的数量正在减少,该行业正在转向替代品,如短鳍鳗(Anguilla bicolor pacifica)。然而,短鳍鳗的基因组数据尚不可用。在这里,我们使用两种测序平台(PacBio Revio 和 Illumina)展示了短鳍鳗的深度全基因组测序结果。在这项研究中,我们实现了短鳍鳗高度连续的基因组组装,包含 19 条假染色体,涵盖了 1.087 Gb 基因组序列的 99.76%,N50 分别为 16.88 和 61.07 Mb,来自 contig 和 scaffold。来自四个不同组织的转录本导致在鳗鲡基因组中注释了 23095 个蛋白质编码基因,其中 98.66%具有功能注释。这个高质量的基因组组装以及注释数据为未来短鳍鳗的功能基因组研究提供了基础。