A Similarity Matrix for Preserving Haplotype Diversity Amongst Parents in Genomic Selection.

IF 1.9 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Abdulraheem A Musa, Norbert Reinsch
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引用次数: 0

Abstract

In genomic selection, balancing genetic gain with the preservation of genetic diversity is a critical challenge, requiring innovative approaches to parent selection. Traditional methods risk losing valuable genetic diversity by not fully accounting for the complex patterns of haplotype distribution. To address this, we developed a novel haplotype similarity measure that estimates the genetic similarity amongst offspring from parent pairs by analysing segregating marker patterns and the covariance of additive genetic effects between potential parental gametes. This measure is encapsulated in a novel similarity matrix that quantifies parental genetic relationships and their Mendelian sampling variance, facilitating the selection of parents with diverse haplotypes to maintain genetic diversity. Our method was evaluated through simulation studies and empirical data analysis, indicating that the similarity matrix can help preserve haplotype diversity and potentially improve long-term genetic gains compared to traditional selection methods. These results suggest that the similarity matrix could contribute to more efficient and sustainable genomic selection programs, although further research is necessary to fully understand its impact.

在基因组选择中保留父母间单倍型多样性的相似性矩阵
在基因组选择中,平衡遗传增益和保持遗传多样性是一个关键的挑战,需要创新的方法来选择亲本。传统的方法由于没有充分考虑单倍型分布的复杂模式,有可能失去宝贵的遗传多样性。为了解决这个问题,我们开发了一种新的单倍型相似性测量方法,通过分析分离标记模式和潜在亲本配子之间加性遗传效应的协方差来估计亲本后代之间的遗传相似性。这一措施被封装在一个新的相似性矩阵中,该矩阵量化了亲本遗传关系及其孟德尔抽样方差,促进了具有不同单倍型的亲本的选择,以保持遗传多样性。通过模拟研究和经验数据分析对我们的方法进行了评估,表明与传统选择方法相比,相似性矩阵有助于保持单倍型多样性,并有可能提高长期遗传收益。这些结果表明,相似性矩阵可以促进更有效和可持续的基因组选择程序,尽管需要进一步的研究来充分了解其影响。
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来源期刊
Journal of Animal Breeding and Genetics
Journal of Animal Breeding and Genetics 农林科学-奶制品与动物科学
CiteScore
5.20
自引率
3.80%
发文量
58
审稿时长
12-24 weeks
期刊介绍: The Journal of Animal Breeding and Genetics publishes original articles by international scientists on genomic selection, and any other topic related to breeding programmes, selection, quantitative genetic, genomics, diversity and evolution of domestic animals. Researchers, teachers, and the animal breeding industry will find the reports of interest. Book reviews appear in many issues.
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