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该基因内的插入缺失和拷贝数变异与山羊生长性状显著相关。

InDel and CNV within the Gene Revealing Strong Associations with Growth Traits in Goat.

作者信息

Song Xiaoyue, Bai Yangyang, Yuan Rongrong, Zhu Haijing, Lan Xianyong, Qu Lei

机构信息

Shaanxi Provincial Engineering and Technology Research Center of Cashmere Goats, Yulin University, Yulin 719000, China.

College of Life Sciences, Yulin University, Yulin 719000, China.

出版信息

Animals (Basel). 2023 Aug 29;13(17):2746. doi: 10.3390/ani13172746.

Abstract

A-kinase-anchoring protein 13 () is a member of the AKAP protein family that has been found to be associated with bone formation. Thus, we investigated the gene as a potential candidate gene for molecular-marker-assisted selection (MAS) in breeding. Our aim was to explore genetic variations (InDel and CNV) within the gene of Shaanbei white cashmere (SBWC) goats and analyze their relationship with growth traits. Ultimately, we identified three InDel loci (16-bp deletion, 15-bp insertion, and 25-bp deletion) and three CNVs, and the 16-bp and 15-bp loci were significantly associated with goat body length ( < 0.05). Both the 16-bp deletion variant and the 15-bp insertion variant facilitated an increase in body length in goats. In addition to this, there was a certain superposition effect between 16-bp and 15-bp loci, although there was no linkage. Additionally, the CNV1 locus was significantly correlated with body height and body length of goats ( < 0.05), and CNV2 was significantly correlated with chest depth, chest circumference, and cannon circumference of goats ( < 0.05). Individuals with gain type showed excellent growth performance. In conclusion, the InDel and CNV loci that we have identified could possibly serve as effective molecular markers in goat breeding, which is very essential for improving efficiency and success of breeding. Moreover, our findings provide a new avenue for further research into the function of the gene.

摘要

A激酶锚定蛋白13()是AKAP蛋白家族的成员,已被发现与骨形成有关。因此,我们研究了该基因,将其作为育种中分子标记辅助选择(MAS)的潜在候选基因。我们的目的是探索陕北白绒山羊基因内的遗传变异(插入缺失和拷贝数变异),并分析它们与生长性状的关系。最终,我们鉴定出三个插入缺失位点(16bp缺失、15bp插入和25bp缺失)和三个拷贝数变异,16bp和15bp位点与山羊体长显著相关(<0.05)。16bp缺失变异体和15bp插入变异体均促进了山羊体长的增加。除此之外,16bp和15bp位点之间存在一定的叠加效应,尽管它们没有连锁关系。此外,拷贝数变异1位点与山羊体高和体长显著相关(<0.05),拷贝数变异2与山羊胸深、胸围和管围显著相关(<0.05)。获得型个体表现出优异的生长性能。总之,我们鉴定出的插入缺失和拷贝数变异位点可能作为山羊育种中的有效分子标记,这对提高育种效率和成功率非常重要。此外,我们的研究结果为进一步研究该基因的功能提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a8f/10487263/a6b23bb2a26f/animals-13-02746-g001.jpg

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