首页> 外文期刊>Frontiers in Marine Science >Genome-Wide DNA Methylation Analysis Reveals a Conserved Epigenetic Response to Seasonal Environmental Variation in the Staghorn Coral Acropora cervicornis
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Genome-Wide DNA Methylation Analysis Reveals a Conserved Epigenetic Response to Seasonal Environmental Variation in the Staghorn Coral Acropora cervicornis

机译:基因组DNA甲基化分析揭示了Staghorn Coral Acropora Cervicornis对季节性环境变异的保守表观遗传反应

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Epigenetic modifications such as DNA methylation have been shown to participate in plastic responses to environmental change in a wide range of organisms, including scleractinian corals. Unfortunately, the current understanding of the links between environmental signals, epigenetic modifications, and the subsequent consequences for acclimatory phenotypic changes remain obscure. Such a knowledge gap extends also to the dynamic nature of epigenetic changes, hampering our ability to ascertain the magnitude and extent of these responses under natural conditions. The present work aims to shed light on these subjects by examining temporal changes in genome-wide patterns of DNA methylation in the staghorn coral Acropora cervicornis in the island of Culebra, PR. During a 17-month period, a total of 162 polymorphic loci were identified using Methylation-Sensitive Amplified Polymorphism (MSAP). Among them, 83 of these fragments displayed changes in DNA methylation changes that were significantly correlated to seasonal variation as determined mostly by changes in sea water temperature. Remarkably, the observed time-dependent change in DNA methylation patterns is consistent across coral genets, coral source sites and site-specific conditions studied. Overall, these results are consistent with a conserved epigenetic response to seasonal environmental variation. These findings highlight the importance of including seasonal variability into experimental designs investigating the role of epigenetic mechanisms such as DNA methylation in responses to stress.
机译:已经显示出诸如DNA甲基化的表观遗传修饰,参与塑料反应,以在各种生物中的环境变化,包括巩膜珊瑚珊瑚。不幸的是,目前对环境信号,表观遗传修饰和随后对灌流表型变化的后续后果的了解仍然模糊不清。这种知识差距也延伸到表观遗传变化的动态性质,阻碍了我们在自然条件下确定这些反应的大小和程度的能力。目前的作品旨在通过检查胰岛Bulebra岛的雄鹿珊瑚Acropora Cervicornis的DNA甲基化基因组模式的时间变化来阐明这些受试者。在17个月的时间内,使用甲基化敏感的扩增多态性(MSAP)鉴定了总共162个多晶型基因座。其中,这些片段中的83种显示了DNA甲基化变化的变化,其与季节性变化显着相关,如主要通过海水温度的变化所确定的。值得注意的是,DNA甲基化模式的观察时间依赖性变化呈珊瑚遗传群,珊瑚源位点和所研究的位点特异性条件一致。总体而言,这些结果与对季节性环境变异的保守的表观遗传反应一致。这些发现突出了包括季节性变异成的实验设计的重要性,研究表观遗传机制如DNA甲基化反应应激的作用。

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