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Detection of Epistasis for Flowering Time Using Bayesian Multilocus Estimation in a Barley MAGIC Population

机译:利用大麦MAGIC种群的贝叶斯多基因座估计检测开花时间的上位性

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摘要

Gene-by-gene interactions, also known as epistasis, regulate many complex traits in different species. With the availability of low-cost genotyping it is now possible to study epistasis on a genome-wide scale. However, identifying genome-wide epistasis is a high-dimensional multiple regression problem and needs the application of dimensionality reduction techniques. Flowering Time (FT) in crops is a complex trait that is known to be influenced by many interacting genes and pathways in various crops. In this study, we successfully apply Sure Independence Screening (SIS) for dimensionality reduction to identify two-way and three-way epistasis for the FT trait in a Multiparent Advanced Generation Inter-Cross (MAGIC) barley population using the Bayesian multilocus model. The MAGIC barley population was generated from intercrossing among eight parental lines and thus, offered greater genetic diversity to detect higher-order epistatic interactions. Our results suggest that SIS is an efficient dimensionality reduction approach to detect high-order interactions in a Bayesian multilocus model. We also observe that many of our findings (genomic regions with main or higher-order epistatic effects) overlap with known candidate genes that have been already reported in barley and closely related species for the FT trait.
机译:基因之间的相互作用,也称为上位性,调节着不同物种的许多复杂性状。利用低成本基因分型技术,现在有可能在全基因组范围内研究上位性。但是,确定全基因组上位性是一个高维多重回归问题,需要应用降维技术。作物的开花时间(FT)是一个复杂的性状,已知它会受到各种作物中许多相互作用的基因和途径的影响。在这项研究中,我们成功地使用了确定性独立筛选(SIS)进行了降维,从而使用贝叶斯多基因座模型在多亲高级一代间杂交(MAGIC)大麦种群中鉴定FT特质的两向和三向上位。 MAGIC大麦种群是由八个亲本系之间的杂交产生的,因此提供了更大的遗传多样性,可检测更高级别的上位互作。我们的结果表明,SIS是一种有效的降维方法,用于检测贝叶斯多基因座模型中的高阶相互作用。我们还观察到,我们的许多发现(具有主要或更高阶上位效应的基因组区域)与已知的候选基因重叠,这些候选基因已经在大麦和与FT相关的密切相关物种中报道。

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