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高质量组装九刺鱼(Pungitius pungitius)基因组。

A High-Quality Assembly of the Nine-Spined Stickleback (Pungitius pungitius) Genome.

机构信息

Department of Biology, Centre for Ecological and Evolutionary Synthesis, University of Oslo, Norway.

Ecological Genetics Research Unit, Research Programme in Organismal and Evolutionary Biology, Faculty of Biological and Environmental Sciences, University of Helsinki, Finland.

出版信息

Genome Biol Evol. 2019 Nov 1;11(11):3291-3308. doi: 10.1093/gbe/evz240.

Abstract

The Gasterosteidae fish family hosts several species that are important models for eco-evolutionary, genetic, and genomic research. In particular, a wealth of genetic and genomic data has been generated for the three-spined stickleback (Gasterosteus aculeatus), the "ecology's supermodel," whereas the genomic resources for the nine-spined stickleback (Pungitius pungitius) have remained relatively scarce. Here, we report a high-quality chromosome-level genome assembly of P. pungitius consisting of 5,303 contigs (N50 = 1.2 Mbp) with a total size of 521 Mbp. These contigs were mapped to 21 linkage groups using a high-density linkage map, yielding a final assembly with 98.5% BUSCO completeness. A total of 25,062 protein-coding genes were annotated, and about 23% of the assembly was found to consist of repetitive elements. A comprehensive analysis of repetitive elements uncovered centromere-specific tandem repeats and provided insights into the evolution of retrotransposons. A multigene phylogenetic analysis inferred a divergence time of about 26 million years ago (Ma) between nine- and three-spined sticklebacks, which is far older than the commonly assumed estimate of 13 Ma. Compared with the three-spined stickleback, we identified an additional duplication of several genes in the hemoglobin cluster. Sequencing data from populations adapted to different environments indicated potential copy number variations in hemoglobin genes. Furthermore, genome-wide synteny comparisons between three- and nine-spined sticklebacks identified chromosomal rearrangements underlying the karyotypic differences between the two species. The high-quality chromosome-scale assembly of the nine-spined stickleback genome obtained with long-read sequencing technology provides a crucial resource for comparative and population genomic investigations of stickleback fishes and teleosts.

摘要

棘鱼科鱼类拥有多个物种,这些物种是生态进化、遗传和基因组研究的重要模式生物。特别是,三刺鱼(Gasterosteus aculeatus)——“生态学的超级模型”,已经产生了大量的遗传和基因组数据,而九刺鱼(Pungitius pungitius)的基因组资源仍然相对匮乏。在这里,我们报道了九刺鱼的高质量染色体水平基因组组装,由 5,303 个 contigs(N50 = 1.2 Mbp)组成,总大小为 521 Mbp。这些 contigs 使用高密度连锁图谱映射到 21 个连锁群,最终组装的 BUSCO 完整性达到 98.5%。总共注释了 25,062 个蛋白质编码基因,约 23%的组装由重复元件组成。对重复元件的综合分析揭示了着丝粒特异性串联重复,并深入了解了反转录转座子的进化。多基因系统发育分析推断出九刺鱼和三刺鱼之间的分化时间约为 2600 万年前(Ma),远早于通常认为的 13 Ma。与三刺鱼相比,我们在血红蛋白簇中发现了几个基因的额外重复。来自适应不同环境的种群的测序数据表明血红蛋白基因存在潜在的拷贝数变异。此外,三刺鱼和九刺鱼之间的全基因组共线性比较确定了两个物种之间染色体差异的染色体重排。使用长读测序技术获得的高质量九刺鱼染色体水平基因组组装为棘鱼和硬骨鱼的比较和群体基因组研究提供了至关重要的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6519/7145574/e2d8680ef128/evz240f1.jpg

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