Earlham Institute, Norwich Research Park, Colney Ln, Norwich, NR4 7UZ, UK.
The Roslin Institute, The University of Edinburgh, Easter Bush Campus, Midlothian, EH25 9RG, UK.
BMC Genomics. 2022 Dec 15;23(1):832. doi: 10.1186/s12864-022-09065-8.
The Nile tilapia (Oreochromis niloticus) is the third most important freshwater fish for aquaculture. Its success is directly linked to continuous breeding efforts focusing on production traits such as growth rate and weight. Among those elite strains, the Genetically Improved Farmed Tilapia (GIFT) programme initiated by WorldFish is now distributed worldwide. To accelerate the development of the GIFT strain through genomic selection, a high-quality reference genome is necessary.
Using a combination of short (10X Genomics) and long read (PacBio HiFi, PacBio CLR) sequencing and a genetic map for the GIFT strain, we generated a chromosome level genome assembly for the GIFT. Using genomes of two closely related species (O. mossambicus, O. aureus), we characterised the extent of introgression between these species and O. niloticus that has occurred during the breeding process. Over 11 Mb of O. mossambicus genomic material could be identified within the GIFT genome, including genes associated with immunity but also with traits of interest such as growth rate.
Because of the breeding history of elite strains, current reference genomes might not be the most suitable to support further studies into the GIFT strain. We generated a chromosome level assembly of the GIFT strain, characterising its mixed origins, and the potential contributions of introgressed regions to selected traits.
尼罗罗非鱼(Oreochromis niloticus)是第三大重要的水产养殖淡水鱼。其成功直接与专注于生产性状(如生长速度和体重)的持续繁殖努力相关。在这些优良品系中,世界渔业组织发起的“遗传改良养殖罗非鱼(GIFT)”计划现已在全球范围内推广。为了通过基因组选择加速 GIFT 品系的发展,需要一个高质量的参考基因组。
我们结合使用短读(10X Genomics)和长读(PacBio HiFi、PacBio CLR)测序以及 GIFT 品系的遗传图谱,为 GIFT 生成了染色体水平的基因组组装。我们利用两个密切相关的物种(O. mossambicus、O. aureus)的基因组,描述了在繁殖过程中这些物种与 O. niloticus 之间发生的基因渗入程度。在 GIFT 基因组中可以鉴定出超过 11Mb 的 O. mossambicus 基因组物质,其中包括与免疫相关的基因,但也包括与生长速度等感兴趣性状相关的基因。
由于优良品系的繁殖历史,当前的参考基因组可能不是支持进一步研究 GIFT 品系的最适合选择。我们生成了 GIFT 品系的染色体水平组装,描述了其混合起源以及渗入区域对选择性状的潜在贡献。