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关于数量性状基因座数量与候选者与训练集之间特定性状基因组关系的反向关联。

On the inverse association between the number of QTL and the trait-specific genomic relationship of a candidate to the training set.

作者信息

Stricker Christian, Fernando Rohan L, Melchinger Albrecht, Auinger Hans-Juergen, Schoen Chris-Carolin

机构信息

agn Genetics, Boertjistrasse 8b, Davos, 7260, Switzerland.

Plant Breeding, School of Life Sciences, Technical University of Munich, Liesel-Beckmann-Strasse 2, Freising, 85354, Germany.

出版信息

Genet Sel Evol. 2024 Dec 13;56(1):75. doi: 10.1186/s12711-024-00940-4.

Abstract

BACKGROUND

Accuracy of genomic prediction depends on the heritability of the trait, the size of the training set, the relationship of the candidates to the training set, and the , where is the number of QTL and is the number of independently segregating chromosomal segments. Due to LD, the number of independently segregating QTL (effective QTL) can be lower than . In this paper, we show that is inversely associated with the trait-specific genomic relationship of a candidate to the training set. This provides an explanation for the inverse association between and the accuracy of prediction.

METHODS

To quantify the genomic relationship of a candidate to all members of the training set, we considered the statistic that has been previously used for this purpose. It quantifies how well the marker covariate vector of a candidate can be represented as a linear combination of the rows of the marker covariate matrix of the training set. In this paper, we used Bayesian regression to make this statistic trait specific and argue that the trait-specific genomic relationship of a candidate to the training set is inversely associated with . Simulation was used to demonstrate the dependence of the trait-specific statistic on , which is related to .

CONCLUSIONS

The posterior distributions of the trait-specific statistic showed that the trait-specific genomic relationship between a candidate and the training set is inversely associated to and . Further, we show that trait-specific genomic relationship between a candidate and the training set is directly related to the size of the training set.

摘要

背景

基因组预测的准确性取决于性状的遗传力、训练集的大小、候选个体与训练集的关系,以及 ,其中 是数量性状位点(QTL)的数量, 是独立分离的染色体片段的数量。由于连锁不平衡(LD),独立分离的QTL数量(有效QTL)可能低于 。在本文中,我们表明 与候选个体与训练集的性状特异性基因组关系呈负相关。这为 与预测准确性之间的负相关提供了解释。

方法

为了量化候选个体与训练集所有成员的基因组关系,我们考虑了先前为此目的使用的 统计量。它量化了候选个体的标记协变量向量可以表示为训练集标记协变量矩阵行的线性组合的程度。在本文中,我们使用贝叶斯回归使该统计量具有性状特异性,并认为候选个体与训练集的性状特异性基因组关系与 呈负相关。使用模拟来证明性状特异性 统计量对 的依赖性,而 与 相关。

结论

性状特异性 统计量的后验分布表明,候选个体与训练集之间的性状特异性基因组关系与 和 呈负相关。此外,我们表明候选个体与训练集之间的性状特异性基因组关系与训练集的大小直接相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d8/11639121/8ef2428996ff/12711_2024_940_Fig1_HTML.jpg

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