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利用基因组共祖矩阵维持细分群体中的遗传多样性。

Maintenance of genetic diversity in subdivided populations using genomic coancestry matrices.

作者信息

Morales-González Elisabeth, Villanueva Beatriz, Toro Miguel Á, Fernández Jesús

机构信息

Departamento de Mejora Genética Animal, INIA-CSIC, Ctra. de La Coruña, km 7.5, 28040, Madrid, Spain.

Departamento de Producción Agraria, ETSI Agronómica, Alimentaria y de Biosistemas, Universidad Politécnica de Madrid, 28040, Madrid, Spain.

出版信息

Mol Ecol Resour. 2025 Jul;25(5):e13781. doi: 10.1111/1755-0998.13781. Epub 2023 Mar 21.

Abstract

For both undivided and subdivided populations, the consensus method to maintain genetic diversity is the Optimal Contribution (OC) method. For subdivided populations, this method determines the optimal contribution of each candidate to each subpopulation to maximize global genetic diversity (which implicitly optimizes migration between subpopulations) while balancing the relative levels of coancestry between and within subpopulations. Inbreeding can be controlled by increasing the weight given to within-subpopulation coancestry (λ). Here we extend the original OC method for subdivided populations that used pedigree-based coancestry matrices, to the use of more accurate genomic matrices. Global levels of genetic diversity, measured as expected heterozygosity and allelic diversity, their distributions within and between subpopulations, and the migration pattern between subpopulations, were evaluated via stochastic simulations. The temporal trajectory of allele frequencies was also investigated. The genomic matrices investigated were (i) the matrix based on deviations of the observed number of alleles shared by two individuals from the expected number under Hardy-Weinberg equilibrium; and (ii) a matrix based on a genomic relationship matrix. The matrix based on deviations led to higher global and within-subpopulation expected heterozygosities, lower inbreeding and similar allelic diversity than the second genomic and pedigree-based matrices when a relatively high weight was given to the within-subpopulation coancestries (λ ≥ 5). Under this scenario, allele frequencies moved only slightly away from the initial frequencies. Therefore, the recommended strategy is to use the former matrix in the OC methodology giving a high weight to the within-subpopulation coancestry.

摘要

对于未细分和已细分的群体,维持遗传多样性的共识方法是最优贡献(OC)法。对于已细分的群体,该方法确定每个候选个体对每个亚群的最优贡献,以在平衡亚群间和亚群内的共祖系数相对水平的同时,最大化全球遗传多样性(这隐含地优化了亚群间的迁移)。近亲繁殖可以通过增加赋予亚群内共祖系数(λ)的权重来控制。在这里,我们将最初用于已细分群体且基于系谱共祖矩阵的OC方法扩展到使用更精确的基因组矩阵。通过随机模拟评估了以期望杂合度和等位基因多样性衡量的全球遗传多样性水平、它们在亚群内和亚群间的分布以及亚群间的迁移模式。还研究了等位基因频率的时间轨迹。所研究的基因组矩阵为:(i)基于两个个体共享的观察到的等位基因数与哈迪-温伯格平衡下预期数的偏差的矩阵;以及(ii)基于基因组关系矩阵的矩阵。当赋予亚群内共祖系数相对较高的权重(λ≥5)时,基于偏差的矩阵比第二种基于基因组和系谱的矩阵导致更高的全球和亚群内期望杂合度、更低的近亲繁殖以及相似的等位基因多样性。在这种情况下,等位基因频率仅略微偏离初始频率。因此,推荐的策略是在OC方法中使用前一种矩阵,并赋予亚群内共祖系数较高的权重。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/959f/12142717/7dfa91b90530/MEN-25-e13781-g001.jpg

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