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鉴定雄性和雌性亚洲龙鱼基因组中的性别特异性候选基因组区域。

Identification of candidate sex-specific genomic regions in male and female Asian arowana genomes.

机构信息

Key Laboratory of Prevention and Control for Aquatic Invasive Alien Species, Ministry of Agriculture and Rural Affairs, Guangdong Modern Recreational Fisheries Engineering Technology Center, Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510380, China.

Shenzhen Key Lab of Marine Genomics, Guangdong Provincial Key Lab of Molecular Breeding in Marine Economic Animals, BGI Academy of Marine Sciences, BGI Marine, BGI, Shenzhen 518083, China.

出版信息

Gigascience. 2022 Sep 15;11. doi: 10.1093/gigascience/giac085.

Abstract

BACKGROUND

Asian arowana, Scleropages formosus, is one of the most expensive aquarium fish species worldwide. Its sex, however, cannot be distinguished clearly at any development stage, which impedes captive breeding and species protection for this endangered aquarium fish.

RESULTS

To discover molecular clues to the sex of Asian arowana, we sequenced 26.5 Gb of PacBio HiFi reads and 179.2 Gb of Hi-C reads for 1 male fish and also sequenced 106.5 Gb of Illumina reads, 36.0 Gb of PacBio Sequel reads, and 80.7 Gb of Hi-C reads for 1 female individual. The final male and female genome assemblies were approximately 756.8 Mb and 781.5 Mb in length and contained 25,262 and 25,328 protein-coding genes, respectively. We also resequenced the genomes of 15 male and 15 female individuals with approximately 722.1 Gb of Illumina reads. A genome-wide association study identified several potentially divergent regions between male and female individuals. In these regions, cd48 and cfap52 could be candidate genes for sex determination of Asian arowana. We also found some structural variations in few chromosomes between male and female individuals.

CONCLUSION

We provided an improved reference genome assembly of female arowana and generated the first sequenced genome of 1 male individual. These valuable genetic resources and resequencing data may improve global aquarium fish research.

摘要

背景

亚洲龙鱼,美丽硬仆骨舌鱼,是世界上最昂贵的观赏鱼类之一。然而,它在任何发育阶段的性别都无法清晰区分,这阻碍了这种濒危观赏鱼类的人工养殖和物种保护。

结果

为了发现亚洲龙鱼性别的分子线索,我们对 1 条雄性个体进行了 PacBio HiFi 测序,共获得 26.5Gb 的测序数据,对 1 条雌性个体进行了 PacBio HiFi 和 Hi-C 测序,共获得 179.2Gb 的测序数据。我们还对 15 条雄性和 15 条雌性个体进行了 Illumina 测序,分别获得了约 722.1Gb 和 722.1Gb 的测序数据,对雄性和雌性个体的基因组进行了从头组装,最终组装得到的雄性和雌性基因组的大小分别约为 756.8Mb 和 781.5Mb,包含 25262 个和 25328 个蛋白质编码基因。我们还对 15 条雄性和 15 条雌性个体进行了重测序,获得了约 722.1Gb 的 Illumina 测序数据。全基因组关联分析鉴定出了一些雄性和雌性个体之间可能存在差异的区域。在这些区域中,cd48 和 cfap52 可能是亚洲龙鱼性别决定的候选基因。我们还在少数雄性和雌性个体的一些染色体上发现了一些结构变异。

结论

我们提供了一个改进的雌性亚洲龙鱼参考基因组组装,并生成了第一个雄性个体的测序基因组。这些宝贵的遗传资源和重测序数据可能会促进全球观赏鱼类研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/841c/9475665/89e099a5d2b9/giac085fig1.jpg

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