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进一步筛选与蛋壳透明度相关基因的 SNP 位点,并评估遗传效应。

Further screening of SNP loci of eggshell translucency related genes and evaluation of genetic effects.

机构信息

Department of Animal Science and Technology, Hebei Agricultural University, Baoding, 071001, China.

Department of Animal Science and Technology, Hebei Agricultural University, Baoding, 071001, China; Baoding livestock husbandry workstation, Baoding, Hebei 071001, China.

出版信息

Poult Sci. 2024 Sep;103(9):103963. doi: 10.1016/j.psj.2024.103963. Epub 2024 Jun 19.

Abstract

Eggshell translucency is a widespread issue in the field of egg quality. Previous research has established that the heritability of eggshell translucency is relatively low or moderate. Scientists have also successfully identified SNP loci related to eggshell translucency on different chromosomes by using gene chips and single-variant GWAS. However, the specific impact of single or multiple genes on the trait of eggshell translucency remains unknown. In an effort to investigate this, we examined 170 SNPs associated with eggshell translucency obtained by our research group. We selected 966 half-sibling laying hens from 2 generations in 3 pure lines: Dwarf Layer-White, Rhode Island Red-White Strain, and Rhode Island Red. Eggs were collected from each hen over a period of 5 consecutive days, and eggshell translucency was measured using a grading method in which the hens were divided into 2 groups: an opaque group and a translucent group. We collected blood samples from the laying hens and extracted DNA. Time of flight mass spectrometry (TOF-MS) was used for genotyping to identify SNP loci that influence the trait of eggshell translucency. The results of our analysis revealed that using TOF-MS in 3 chicken strains, we were able to eliminate loci with low gene polymorphism, genetic effect contribution less than 1%, and deviation from Hardy-Weinberg equilibrium. Ultimately, 5 SNPs (Affx-50362599, rs15050262, rs312943734, rs316121113, and rs317389181) were identified on chromosomes 1, 5, and 19. Additionally, nine candidate genes (DCN, BTG1, ZFP92, POU2F1, NUCB2, FTL, GGNBP2, ACACA, and TADA2A) were found to be associated with these SNPs. No linkage disequilibrium relationship was observed between the 2 pairs of SNP loci on chromosomes 1 and 19. Based on previous studies on the formation mechanism of eggshell translucency, we hypothesize that NUCB2, FTL, and ACACA genes may be affecting the eggshell structure through different mechanisms, such as increase the water permeability or make thin of eggshell membrane, which promote moisture or part of other egg contents and ultimately lead to the formation of eggshell translucency. These findings validate and identify five SNP loci that regulate the translucency trait, and provide molecular markers for breeding non-translucent populations. Furthermore, this study serves as a reference for further investigation of the genetic regulatory mechanisms underlying eggshell translucency.

摘要

蛋壳透光性是蛋品质量领域中一个普遍存在的问题。先前的研究表明,蛋壳透光性的遗传力相对较低或中等。科学家们还成功地通过基因芯片和单变量 GWAS 在不同染色体上鉴定出与蛋壳透光性相关的 SNP 位点。然而,单个或多个基因对蛋壳透光性性状的具体影响仍不清楚。为了研究这个问题,我们检查了我们的研究小组获得的 170 个与蛋壳透光性相关的 SNP。我们从 3 个纯系的 2 代中选择了 966 只半同胞产蛋鸡:Dwarf Layer-White、Rhode Island Red-White Strain 和 Rhode Island Red。在 5 天的连续时间内,从每只母鸡中收集鸡蛋,并使用分级方法测量蛋壳透光性,将母鸡分为不透明组和半透明组。我们从产蛋母鸡中采集血液样本并提取 DNA。飞行时间质谱(TOF-MS)用于基因分型,以鉴定影响蛋壳透光性性状的 SNP 位点。我们的分析结果表明,在 3 个鸡种中使用 TOF-MS,我们能够消除基因多态性低、遗传效应贡献小于 1%以及偏离 Hardy-Weinberg 平衡的位点。最终,在染色体 1、5 和 19 上鉴定出 5 个 SNP(Affx-50362599、rs15050262、rs312943734、rs316121113 和 rs317389181)。此外,还发现了 9 个候选基因(DCN、BTG1、ZFP92、POU2F1、NUCB2、FTL、GGNBP2、ACACA 和 TADA2A)与这些 SNP 相关。染色体 1 和 19 上的 2 对 SNP 位点之间没有观察到连锁不平衡关系。基于蛋壳透光性形成机制的先前研究,我们假设 NUCB2、FTL 和 ACACA 基因可能通过不同的机制影响蛋壳结构,例如增加水的渗透性或使蛋壳膜变薄,从而促进水分或部分其他鸡蛋内容物的渗透,最终导致蛋壳透光性的形成。这些发现验证并鉴定了 5 个调节透光性性状的 SNP 位点,为培育不透明群体提供了分子标记。此外,这项研究为进一步研究蛋壳透光性的遗传调控机制提供了参考。

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