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濒危长江江豚和东亚江豚的端粒到端粒无间隙基因组组装

Telomere-to-telomere gap-free genome assembly of the endangered Yangtze finless porpoise and East Asian finless porpoise.

作者信息

Yin Denghua, Chen Chunhai, Lin Danqing, Hua Zhong, Ying Congping, Zhang Jialu, Zhao Chenxi, Liu Yan, Cao Zhichen, Zhang Han, Wang Chenhe, Liang Liping, Xu Pao, Jian Jianbo, Liu Kai

机构信息

Key Laboratory of Freshwater Fisheries and Germplasm Resources Utilization, Ministry of Agriculture and Rural Affairs, Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences, Wuxi 214081, China.

BGI Genomics, Shenzhen 518083, China.

出版信息

Gigascience. 2024 Jan 2;13. doi: 10.1093/gigascience/giae067.

Abstract

BACKGROUND

The Yangtze finless porpoise (Neophocaena asiaeorientalis asiaeorientalis, YFP) and the East Asian finless porpoise (Neophocaena asiaeorientalis sunameri, EFP) are 2 subspecies of the narrow-ridged finless porpoise that live in freshwater and saltwater, respectively. The main objective of this study was to provide contiguous chromosome-level genome assemblies for YFP and EFP.

RESULTS

Here, we generated and upgraded the genomes of YFP and EFP at the telomere-to-telomere level through the integration of PacBio HiFi long reads, ultra-long ONT reads, and Hi-C sequencing data with a total size of 2.48 Gb and 2.50 Gb, respectively. The scaffold N50 of 2 genomes was 125.12 Mb (YFP) and 128 Mb (EFP) with 1 contig for 1 chromosome. The telomere repeat and centromere position were clearly identified in both YFP and EFP genomes. In total, 5,480 newfound genes were detected in the YFP genome, including 56 genes located in the newly identified centromere regions. Additionally, synteny blocks, structural similarities, phylogenetic relationships, gene family expansion, and inference of selection were studied in connection with the genomes of other related mammals.

CONCLUSIONS

Our research findings provide evidence for the gradual adaptation of EFP in a marine environment and the potential sensitivity of YFP to genetic damage. Compared to the 34 cetacean genomes sourced from public databases, the 2 new assemblies demonstrate superior continuity with the longest contig N50 and scaffold N50 values, as well as the lowest number of contigs. The improvement of telomere-to-telomere gap-free reference genome resources supports conservation genetics and population management for finless porpoises.

摘要

背景

长江江豚(Neophocaena asiaeorientalis asiaeorientalis,YFP)和东亚江豚(Neophocaena asiaeorientalis sunameri,EFP)是窄脊江豚的两个亚种,分别生活在淡水和咸水中。本研究的主要目的是为YFP和EFP提供连续的染色体水平基因组组装。

结果

在此,我们通过整合PacBio HiFi长读长、超长ONT读长和Hi-C测序数据,在端粒到端粒水平上生成并升级了YFP和EFP的基因组,其总大小分别为2.48 Gb和2.50 Gb。两个基因组的支架N50分别为125.12 Mb(YFP)和128 Mb(EFP),每个染色体有1个重叠群。在YFP和EFP基因组中都清楚地鉴定出了端粒重复序列和着丝粒位置。在YFP基因组中总共检测到5480个新发现的基因,其中包括56个位于新鉴定的着丝粒区域的基因。此外,还结合其他相关哺乳动物的基因组研究了同线块、结构相似性、系统发育关系、基因家族扩张和选择推断。

结论

我们的研究结果为EFP在海洋环境中的逐渐适应以及YFP对遗传损伤的潜在敏感性提供了证据。与从公共数据库获取的34个鲸类基因组相比,这两个新组装体在最长重叠群N50和支架N50值方面具有更高的连续性,并且重叠群数量最少。端粒到端粒无间隙参考基因组资源的改进支持了江豚保护遗传学和种群管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1b5/11403816/509a37632a28/giae067fig1.jpg

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