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Assessment of imprinting- and genetic variation-dependent monoallelic expression using reciprocal allele descendants between human family trios

机译:使用人类家庭三重奏之间的等位基因后代评估印记和遗传变异依赖性单等位基因表达

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摘要

Genomic imprinting is an important epigenetic process that silences one of the parentally-inherited alleles of a gene and thereby exhibits allelic-specific expression (ASE). Detection of human imprinting events is hampered by the infeasibility of the reciprocal mating system in humans and the removal of ASE events arising from non-imprinting factors. Here, we describe a pipeline with the pattern of reciprocal allele descendants (RADs) through genotyping and transcriptome sequencing data across independent parent-offspring trios to discriminate between varied types of ASE (e.g., imprinting, genetic variation-dependent ASE, and random monoallelic expression (RME)). We show that the vast majority of ASE events are due to sequence-dependent genetic variant, which are evolutionarily conserved and may themselves play a cis-regulatory role. Particularly, 74% of non-RAD ASE events, even though they exhibit ASE biases toward the same parentally-inherited allele across different individuals, are derived from genetic variation but not imprinting. We further show that the RME effect may affect the effectiveness of the population-based method for detecting imprinting events and our pipeline can help to distinguish between these two ASE types. Taken together, this study provides a good indicator for categorization of different types of ASE, opening up this widespread and complex mechanism for comprehensive characterization.
机译:基因组印记是重要的表观遗传过程,可使基因的亲本遗传的等位基因之一沉默,从而表现出等位基因特异性表达(ASE)。人类相互交配系统的不可行性以及由于非印迹因素引起的ASE事件的去除,阻碍了人类印迹事件的检测。在这里,我们通过独立的父子后代三者之间的基因分型和转录组测序数据来描述具有互反等位基因后代(RADs)模式的流水线,以区分各种类型的ASE(例如,印迹,依赖遗传变异的ASE和随机单等位基因表达(RME))。我们表明,绝大多数ASE事件是由于序列依赖性遗传变异引起的,这些变异在进化上是保守的,并且可能自身起顺式调节作用。特别是,即使非RAD ASE事件在不同个体之间对相同的父母遗传的等位基因表现出ASE偏倚,也有74%来自基因变异而不是印迹。我们进一步表明,RME效应可能会影响基于群体的方法检测印迹事件的有效性,并且我们的渠道可以帮助区分这两种ASE类型。两者合计,这项研究为不同类型的ASE的分类提供了一个很好的指标,为广泛的综合分析打开了这种广泛而复杂的机制。

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