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六线鱼染色体水平的基因组组装与注释

A Chromosomal-level genome assembly and annotation of fat greenling (Hexagrammos otakii).

作者信息

Li Li, Hu Fawen, Liu Dong, Wang Xiaolong, Diao Jing, Zhu Yijing, Gao Fengxiang, Fan Ying, Jian Yuxia, Wang Xue, Pan Lei, Guo Wen

机构信息

Shandong Key Laboratory of Disease Control in Mariculture, Key Laboratory of Benthic Fisheries Aquaculture and Enhancement, Marine Science Research Institute of Shandong Province (National Oceanographic Center, Qingdao), Qingdao, 266104, China.

出版信息

Sci Data. 2025 Jan 15;12(1):78. doi: 10.1038/s41597-025-04368-3.

Abstract

Fat greenling (Hexagrammos otakii Jordan & Starks, 1895) is a valuable marine fish species, crucial for aquaculture in Northern China due to its high-quality meat and significant economic value. However, the aquaculture industry faces challenges such as trait degradation, early sexual maturity, and disease susceptibility, necessitating advanced genomic interventions for sustainable cultivation. This study presents the first chromosomal-level genome assembly of H. otakii, achieved using PacBio long-read sequencing and Hi-C technology. The assembly yielded a genome size of 682.43 Mb with a contig N50 size of 2.39 Mb and a scaffold N50 size of 27.83 Mb. The completeness of genome assessed by BUSCO is 96.99%. A total of 22,334 protein-coding genes were predicted, with 21,619 (96.80%) functionally annotated across various protein databases. This genomic resource is a step forward in supporting the breeding, germplasm conservation, and enhancement of H. otakii, facilitating genetic studies and the development of strategies for disease resistance and growth optimization in aquaculture.

摘要

六线鱼(Hexagrammos otakii Jordan & Starks, 1895)是一种具有重要价值的海洋鱼类,因其肉质优良且具有显著的经济价值,在中国北方的水产养殖中至关重要。然而,水产养殖业面临着诸如性状退化、早熟和易患病等挑战,因此需要先进的基因组干预措施来实现可持续养殖。本研究展示了利用PacBio长读长测序和Hi-C技术首次完成的六线鱼染色体水平的基因组组装。该组装产生的基因组大小为682.43 Mb,重叠群N50大小为2.39 Mb,支架N50大小为27.83 Mb。通过BUSCO评估的基因组完整性为96.99%。共预测到22,334个蛋白质编码基因,其中21,619个(96.80%)在各种蛋白质数据库中得到了功能注释。这一基因组资源在支持六线鱼的育种、种质保存和改良方面向前迈进了一步,有助于开展遗传研究以及制定水产养殖中抗病和生长优化策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c29/11735804/2b76dd11e69c/41597_2025_4368_Fig1_HTML.jpg

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