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The mystery of missing heritability: Genetic interactions create phantom heritability

机译:缺失遗传力的奥秘:遗传相互作用产生幻影遗传力

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摘要

Human genetics has been haunted by the mystery of “missing heritability” of common traits. Although studies have discovered >1,200 variants associated with common diseases and traits, these variants typically appear to explain only a minority of the heritability. The proportion of heritability explained by a set of variants is the ratio of (i) the heritability due to these variants (numerator), estimated directly from their observed effects, to (ii) the total heritability (denominator), inferred indirectly from population data. The prevailing view has been that the explanation for missing heritability lies in the numerator—that is, in as-yet undiscovered variants. While many variants surely remain to be found, we show here that a substantial portion of missing heritability could arise from overestimation of the denominator, creating “phantom heritability.” Specifically, (i) estimates of total heritability implicitly assume the trait involves no genetic interactions (epistasis) among loci; (ii) this assumption is not justified, because models with interactions are also consistent with observable data; and (iii) under such models, the total heritability may be much smaller and thus the proportion of heritability explained much larger. For example, 80% of the currently missing heritability for Crohn's disease could be due to genetic interactions, if the disease involves interaction among three pathways. In short, missing heritability need not directly correspond to missing variants, because current estimates of total heritability may be significantly inflated by genetic interactions. Finally, we describe a method for estimating heritability from isolated populations that is not inflated by genetic interactions.
机译:人类遗传学一直困扰着共同特征“缺乏遗传性”的谜团。尽管研究发现与常见疾病和特征相关的> 1,200个变异,但这些变异通常似乎只能解释少数遗传力。由一组变体解释的遗传力所占的比例是(i)这些变体(分子)导致的遗传力(直接从其观察到的影响估算)与(ii)总遗传力(分母)之间的比率,该总遗传力(分母)是根据种群数据间接推断的。普遍的看法是,关于遗传力缺失的解释是分子,也就是尚未发现的变体。虽然肯定还有许多变体,但我们在这里表明,遗漏遗传力的很大一部分可能是由于对分母的高估而造成的,从而产生了“幻影遗传力”。具体而言,(i)对总遗传力的估计隐含地假设该性状不涉及基因座之间的遗传相互作用(表皮病); (ii)这种假设是不合理的,因为具有相互作用的模型也与可观察的数据一致; (iii)在这种模型下,总的遗传力可能要小得多,因此,遗传力的比例要大得多。例如,如果克罗恩氏病涉及三个途径之间的相互作用,那么目前克罗恩氏病遗漏的遗传力的80%可能是由于遗传相互作用。简而言之,缺失的遗传力不必直接对应缺失的变异体,因为目前对总遗传力的估计可能会因遗传相互作用而大大夸大。最后,我们描述了一种从孤立种群中估算遗传力的方法,该方法不会因遗传相互作用而膨胀。

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