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全基因组分析揭示了 LEPR 基因变异与绵羊体脂肪储备之间的强烈关联。

Genome-wide analyses reveal a strong association between LEPR gene variants and body fat reserves in ewes.

机构信息

GENPHYSE, Université de Toulouse, INRAE, ENVT, 24 chemin de Borde Rouge, CS 52627, F-31326, Castanet-Tolosan, France.

SELMET, INRAE, CIRAD, Montpellier SupAgro, Univ. Montpellier, 34060, Montpellier, France.

出版信息

BMC Genomics. 2022 Jun 1;23(1):412. doi: 10.1186/s12864-022-08636-z.

Abstract

BACKGROUND

Among the adaptive capacities of animals, the management of energetic body reserves (BR) through the BR mobilization and accretion processes (BR dynamics, BRD) has become an increasingly valuable attribute for livestock sustainability, allowing animals to cope with more variable environments. BRD has previously been reported to be heritable in ruminants. In the present work, we conducted genome-wide studies (GWAS) in sheep to determine genetic variants associated with BRD. BR (i.e. levels) and BRD (i.e. changes over time) were obtained through body condition score measurements at eight physiological stages throughout each productive cycle in Romane ewes (n = 1034) and were used as phenotypes for GWAS. After quality controls and imputation, 48,593 single nucleotide polymorphisms (SNP) were included in the GWAS.

RESULTS

Among the 23 QTL regions identified, a major QTL associated with BR during pregnancy and lactation was identified on chromosome 1. In this region, several significant SNPs mapped to the leptin receptor gene (LEPR), among which one SNP mapped to the coding sequence. The point mutation induces the p.P1019S substitution in the cytoplasmic domain, close to tyrosine phosphorylation sites. The frequency of the SNP associated with increased BR levels was 32%, and the LEPR genotype explained up to 5% of the variance of the trait. Higher fatness levels in ewes carrying the LEPR p.P1019S mutation were observed all along the productive cycle.

CONCLUSIONS

These results provide strong evidences for involvement of LEPR in the regulation of BR in sheep and highlight it as a major candidate gene for improving adaptive capacities by genetic selection.

摘要

背景

在动物的适应能力中,通过动员和积累能量储备(BR)的过程(BR 动态,BRD)来管理能量储备已成为牲畜可持续性的一个越来越有价值的属性,使动物能够应对更具变化性的环境。BRD 以前被报道在反刍动物中是可遗传的。在本工作中,我们在绵羊中进行了全基因组研究(GWAS),以确定与 BRD 相关的遗传变异。BR(即水平)和 BRD(即随时间的变化)是通过在每个生产周期的八个生理阶段对罗曼羊的体况评分测量获得的(n=1034),并用作 GWAS 的表型。经过质量控制和插补后,GWAS 中包含了 48593 个单核苷酸多态性(SNP)。

结果

在所鉴定的 23 个 QTL 区域中,在怀孕期间和哺乳期与 BR 相关的一个主要 QTL 位于 1 号染色体上。在该区域中,几个与瘦素受体基因(LEPR)相关的显著 SNP 被映射到,其中一个 SNP 映射到编码序列。该点突变导致细胞质结构域中的 p.P1019S 取代,靠近酪氨酸磷酸化位点。与 BR 水平升高相关的 SNP 的频率为 32%,LEPR 基因型解释了该性状方差的 5%。携带 LEPR p.P1019S 突变的母羊在整个生产周期中脂肪水平更高。

结论

这些结果为 LEPR 参与绵羊 BR 的调节提供了有力证据,并突出了它作为通过遗传选择提高适应能力的主要候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b085/9158286/416838d686dd/12864_2022_8636_Fig1_HTML.jpg

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