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海湾扇贝的染色体水平基因组组装为大型扇贝的遗传特征和适应性进化提供了见解。

Chromosome-level genome assembly of sea scallop Placopecten magellanicus provides insights into the genetic characteristics and adaptive evolution of large scallops.

作者信息

Xie Xi, Teng Weiming, Yu Zuoan, Li Dacheng, Yang Miao, Zhang Haijiao, Zheng Jie, Li Hualin, Sun Yongxin, Liu Xiangfeng, Zhou Zunchun, Zhang Xiliang, Du Shaojun, Li Qi, Chang Yaqing, Zhang Ming, Wang Qingzhi

机构信息

Dalian Key Laboratory of Genetic Resources for Marine Shellfish, Liaoning Ocean and Fisheries Science Research Institute, Dalian, China; Key Laboratory of Protection and Utilization of Aquatic Germplasm Resource, Ministry of Agriculture and Rural Affairs, Dalian, China.

Dalian Key Laboratory of Genetic Resources for Marine Shellfish, Liaoning Ocean and Fisheries Science Research Institute, Dalian, China.

出版信息

Genomics. 2023 Nov;115(6):110747. doi: 10.1016/j.ygeno.2023.110747. Epub 2023 Nov 15.

Abstract

Placopecten magellanicus (Gmelin, 1791), a deep-sea Atlantic scallop, holds significant commercial value as a benthic marine bivalve along the northwest Atlantic coast. Recognizing its economic importance, the need to reconstruct its genome assembly becomes apparent, fostering insights into natural resources and generic breeding potential. This study reports a high-quality chromosome-level genome of P. magellanicus, achieved through the integration of Illumina short read sequencing, PacBio HiFi sequencing, and Hi-C sequencing techniques. The resulting assembly spans 1778 Mb with a scaffold N50 of 86.71 Mb. An intriguing observation arises - the genome size of P. magellanicus surpasses that of its Pectinidae family peers by 1.80 to 2.46 times. Within this genome, 28,111 protein-coding genes were identified. Comparative genomic analysis involving five scallop species unveils the critical determinant of this expanded genome: the proliferation of repetitive sequences recently inserted, contributing to its enlarged size. The landscape of whole genome collinearity sheds light on the relationships among scallop species, enhancing our broader understanding of their genomic framework. This genome provides genomic resources for future molecular biology research on scallops and serves as a guide for the exploration of longevity-related genes in scallops.

摘要

大西洋深海扇贝(Placopecten magellanicus,Gmelin,1791)作为西北大西洋沿岸的一种底栖海洋双壳贝类,具有重要的商业价值。鉴于其经济重要性,重建其基因组组装的必要性变得显而易见,这有助于深入了解自然资源和遗传育种潜力。本研究报告了通过整合Illumina短读长测序、PacBio HiFi测序和Hi-C测序技术获得的高质量染色体水平的大西洋深海扇贝基因组。最终的组装基因组跨度为1778 Mb,支架N50为86.71 Mb。一个有趣的发现是——大西洋深海扇贝的基因组大小比其扇贝科同类物种大1.80至2.46倍。在这个基因组中,鉴定出了28111个蛋白质编码基因。对五个扇贝物种的比较基因组分析揭示了这个扩展基因组的关键决定因素:最近插入的重复序列的增殖,导致了其基因组大小的增加。全基因组共线性图谱揭示了扇贝物种之间的关系,加深了我们对其基因组框架的更广泛理解。这个基因组为未来扇贝的分子生物学研究提供了基因组资源,并为探索扇贝中与长寿相关的基因提供了指导。

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