Yellow Sea Fisheries Research Institute, CAFS, Laboratory for Marine Fisheries Science and Food Production Processes, Pilot National Laboratory for Marine Science and Technology (Qingdao), Qingdao, China.
Shandong Provincial Key Laboratory of Marine Fishery Biotechnology and Genetic Breeding, Qingdao, China.
Mol Ecol Resour. 2022 Oct;22(7):2701-2712. doi: 10.1111/1755-0998.13648. Epub 2022 Jun 1.
Fishes of the genus Seriola are widely farmed and highly valued in global aquaculture production. To further understand their economically important traits and help improve aquaculture product quality and sustainability, we performed a chromosome-level genome construction for Seriola aureovittata. Combining two technologies, PacBio and BGISEQ-500, we assembled 649.86 Mb S. aureovittata genome sequences with a contig N50 of 22.21 Mb, and 98% of BUSCO genes were detected in total. The initial assembly was then further scaffolded into 24 pseudochromosomes using Hi-C data, indicating the high quality of the genome. Genome evolution analysis showed that many genes related to fatty acid metabolism and oxygen binding, or transport were expanded, which provided insights into the metabolic characteristics of fatty acids and efficient oxygen transport. Based on the genome data, we confirmed the evolutionary relationship of S. aureovittata, S. dorsalis and S. lalandi and identified chr12 as the putative sex chromosome of S. aureovittata. Our chromosome-level genome assembly provides a genetic foundation for the phylogenetic and taxonomic investigation of different Seriola species. Moreover, the genome will provide an important genomic resource for further biological and aquaculture studies of S. aureovittata.
真鲷属鱼类广泛养殖,在全球水产养殖生产中具有很高的价值。为了进一步了解其具有经济重要性的特征,并帮助提高水产养殖产品的质量和可持续性,我们对真鲷(Seriola aureovittata)进行了染色体水平的基因组构建。我们结合 PacBio 和 BGISEQ-500 两种技术,组装了 649.86 Mb 的真鲷基因组序列,其 contig N50 为 22.21 Mb,总共检测到 98%的 BUSCO 基因。最初的组装然后使用 Hi-C 数据进一步支架到 24 条假染色体上,表明基因组的高质量。基因组进化分析表明,许多与脂肪酸代谢和氧结合或运输相关的基因发生了扩张,这为脂肪酸的代谢特征和高效氧气运输提供了新的见解。基于基因组数据,我们确认了真鲷、黄鳍鲷和平鲷的进化关系,并确定 chr12 是真鲷的可能性染色体。我们的染色体水平基因组组装为不同真鲷物种的系统发育和分类学研究提供了遗传基础。此外,该基因组将为进一步研究真鲷的生物学和水产养殖提供重要的基因组资源。