ADAM-multi: software to simulate complex breeding programs for animals and plants with different ploidy levels and generalized genotypic effect models to account for multiple alleles.

IF 2.8 3区 生物学 Q2 GENETICS & HEREDITY Frontiers in Genetics Pub Date : 2025-02-10 eCollection Date: 2025-01-01 DOI:10.3389/fgene.2025.1513615
Thinh Tuan Chu, Just Jensen
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Abstract

Stochastic simulation software, ADAM, has been developed for the purpose of breeding optimization in animals and plants, and for validation of statistical models used in genetic evaluations. Just like other common simulation programs, ADAM assumed the bi-allelic state of quantitative trait locus (QTL). While the bi-allelic state of marker loci is due to the common choice of genotyping technology of single nucleotide polymorphism (SNP) chip, the assumption may not hold for the linked QTL. In the version of ADAM-Multi, we employ a novel simulation model capable of simulating additive, dominance, and epistatic genotypic effects for species with different levels of ploidy, providing with a more realistic assumption of multiple allelism for QTL variants. When assuming bi-allelic QTL, our proposed model becomes identical to the model assumption in common simulation programs, and in genetic textbooks. Along with the description of the updated simulation model in ADAM-Multi, this paper shows two small-scale studies that investigate the effects of multi-allelic versus bi-allelic assumptions in simulation and the use of different prediction models in a single-population breeding program for potatoes. We found that genomic models using dense bi-allelic markers could effectively predicted breeding values of individuals in a well-structure population despite the presence of multi-allelic QTL. Additionally, the small-scale study indicated that including non-additive genetic effects in the prediction model for selection did not lead to an improvement in the rate of genetic gains of the breeding program.

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ADAM-multi:用于模拟具有不同倍性水平的动物和植物的复杂育种程序的软件,以及用于解释多个等位基因的广义基因型效应模型。
随机模拟软件 ADAM 是为优化动植物育种和验证遗传评估中使用的统计模型而开发的。与其他常见的模拟程序一样,ADAM 假设数量性状基因座(QTL)为双等位基因状态。虽然标记位点的双等位基因状态是由于常用的单核苷酸多态性(SNP)芯片基因分型技术造成的,但这一假设对于相连的 QTL 可能并不成立。在 ADAM-Multi 版本中,我们采用了一种新的模拟模型,能够模拟不同倍性水平物种的加性、显性和外显基因型效应,为 QTL 变体的多等位基因提供了更现实的假设。在假设双等位基因 QTL 时,我们提出的模型与常见模拟程序和遗传学教科书中的模型假设相同。在介绍 ADAM-Multi 中更新的模拟模型的同时,本文还展示了两项小规模研究,研究了模拟中多等位基因与双等位基因假设的影响,以及在马铃薯单种群育种计划中使用不同预测模型的情况。我们发现,尽管存在多等位基因QTL,但使用密集双等位基因标记的基因组模型可以有效预测结构良好种群中个体的育种值。此外,小规模研究表明,在预测模型中加入非加性遗传效应进行选择并不能提高育种计划的遗传收益率。
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来源期刊
Frontiers in Genetics
Frontiers in Genetics Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
5.50
自引率
8.10%
发文量
3491
审稿时长
14 weeks
期刊介绍: Frontiers in Genetics publishes rigorously peer-reviewed research on genes and genomes relating to all the domains of life, from humans to plants to livestock and other model organisms. Led by an outstanding Editorial Board of the world’s leading experts, this multidisciplinary, open-access journal is at the forefront of communicating cutting-edge research to researchers, academics, clinicians, policy makers and the public. The study of inheritance and the impact of the genome on various biological processes is well documented. However, the majority of discoveries are still to come. A new era is seeing major developments in the function and variability of the genome, the use of genetic and genomic tools and the analysis of the genetic basis of various biological phenomena.
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