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基因组范围内检测四个家养虹鳟群体(Oncorhynchus mykiss)共享的正选择和平衡选择特征。

Genome-wide detection of positive and balancing signatures of selection shared by four domesticated rainbow trout populations (Oncorhynchus mykiss).

机构信息

Université Paris-Saclay, INRAE, AgroParisTech, GABI, 78350, Jouy-en-Josas, France.

出版信息

Genet Sel Evol. 2024 Feb 22;56(1):13. doi: 10.1186/s12711-024-00884-9.

Abstract

BACKGROUND

Evolutionary processes leave footprints along the genome over time. Highly homozygous regions may correspond to positive selection of favorable alleles, while maintenance of heterozygous regions may be due to balancing selection phenomena. We analyzed data from 176 fish from four disconnected domestic rainbow trout populations that were genotyped using a high-density Axiom Trout genotyping 665K single nucleotide polymorphism array, including 20 from the US and 156 from three French lines. Using methods based on runs of homozygosity and extended haplotype homozygosity, we detected signatures of selection in these four populations.

RESULTS

Nine genomic regions that included 253 genes were identified as being under positive selection in all four populations Most were located on chromosome 2 but also on chromosomes 12, 15, 16, and 20. In addition, four heterozygous regions that contain 29 genes that are putatively under balancing selection were also shared by the four populations. These were located on chromosomes 10, 13, and 19. Regardless of the homozygous or heterozygous nature of the regions, in each region, we detected several genes that are highly conserved among vertebrates due to their critical roles in cellular and nuclear organization, embryonic development, or immunity. We identified new candidate genes involved in rainbow trout fitness, as well as 17 genes that were previously identified to be under positive selection, 10 of which in other fishes (auts2, atp1b3, zp4, znf135, igf-1α, brd2, col9a2, mrap2, pbx1, and emilin-3).

CONCLUSIONS

Using material from disconnected populations of different origins allowed us to draw a genome-wide map of signatures of positive selection that are shared between these rainbow trout populations, and to identify several regions that are putatively under balancing selection. These results provide a valuable resource for future investigations of the dynamics of genetic diversity and genome evolution during domestication.

摘要

背景

进化过程会随着时间在基因组中留下痕迹。高度纯合区域可能对应有利等位基因的正选择,而维持杂合区域可能是由于平衡选择现象。我们分析了来自四个不连续的家养殖虹鳟鱼群体的 176 条鱼的数据,这些鱼使用高密度 Axiom Trout 基因分型 665K 单核苷酸多态性阵列进行了基因分型,其中 20 条来自美国,156 条来自三个法国品系。使用基于纯合运行和扩展单倍型纯合的方法,我们在这四个群体中检测到了选择的迹象。

结果

在所有四个群体中,有 9 个基因组区域包含 253 个基因被鉴定为正选择。大多数位于第 2 号染色体上,但也位于第 12、15、16 和 20 号染色体上。此外,四个包含 29 个假定受平衡选择的基因的杂合区域也被四个群体共享。这些区域位于第 10、13 和 19 号染色体上。无论这些区域是纯合还是杂合,在每个区域中,我们都检测到了几个由于其在细胞和核组织、胚胎发育或免疫中的关键作用而在脊椎动物中高度保守的基因。我们鉴定了新的候选基因,这些基因与虹鳟鱼的适应性有关,还有 17 个之前被鉴定为正选择的基因,其中 10 个在其他鱼类中(auts2、atp1b3、zp4、znf135、igf-1α、brd2、col9a2、mrap2、pbx1 和 emilin-3)。

结论

使用来自不同起源的不连续群体的材料,我们绘制了这些虹鳟鱼群体之间共享的正选择特征的全基因组图谱,并鉴定了几个假定受平衡选择的区域。这些结果为未来研究驯化过程中遗传多样性和基因组进化的动态提供了有价值的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/affa/10882880/ec94c98a4450/12711_2024_884_Fig1_HTML.jpg

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