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Scoring and analysis of methylation-sensitive amplification polymorphisms for epigenetic population studies

机译:表观遗传研究的甲基化敏感性扩增多态性评分和分析

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摘要

DNA methylation is an important, heritable epigenetic modification in most eukaryotic organisms that is connected with numerous biological processes. To study the impact of natural epigenetic variation in an ecological or evolutionary context, epigenetic studies are increasingly using methylation-sensitive amplification polymorphism (MSAP) for surveys at the population or species level. However, no consensus exists on how to interpret and score the multistate information obtained from the MSAP banding patterns. Here, we review the previously used scoring approaches for population epigenetic studies and develop new alternatives. To assess effects of the different approaches on parameters of epigenetic diversity and differentiation, we applied eight scoring schemes to a case study of three populations of the plant species Viola elatior. For a total number of 168 detected polymorphic MSAP fragments, the number of ultimately scored polymorphic epiloci ranged between 78 and 286 depending on the particular scoring scheme. Both, estimates of epigenetic diversity and differentiation varied strongly between scoring approaches. However, linear regression and PCoA revealed qualitatively similar patterns, suggesting that the scoring approaches are largely consistent. For single-locus analyses of MSAP data, for example the search for loci under selection, we advocate a new scoring approach that separately takes into account different methylation types and thus seems appropriate for drawing more detailed conclusions in ecological or evolutionary contexts. An R script (MSAP_score.r) for scoring and basic data analysis is provided.
机译:在大多数真核生物中,DNA甲基化是重要的,可遗传的表观遗传修饰,与许多生物过程有关。为了研究自然表观遗传变异在生态或进化背景下的影响,表观遗传研究越来越多地使用甲基化敏感性扩增多态性(MSAP)进行种群或物种水平的调查。但是,关于如何解释和评分从MSAP绑定模式获得的多状态信息,尚无共识。在这里,我们回顾了先前用于人口表观遗传研究的评分方法,并开发了新的替代方法。为了评估不同方法对表观遗传多样性和分化参数的影响,我们将八种计分方案应用于对三个植物中提琴Viola elatior的案例研究。对于总数为168个检测到的多态性MSAP片段,最终得分的多态性Epiloci的数量在78到286之间,具体取决于特定的评分方案。表观遗传多样性和分化的估计在两种评分方法之间差异很大。但是,线性回归和PCoA显示出定性相似的模式,这表明评分方法在很大程度上是一致的。对于MSAP数据的单场所分析,例如寻找选择的基因座,我们提倡一种新的计分方法,该方法应分别考虑不同的甲基化类型,因此似乎适合在生态或进化背景下得出更详细的结论。提供了用于评分和基本数据分析的R脚本(MSAP_score.r)。

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