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Epigenetic and chromatin-based mechanisms in environmental stress adaptation and stress memory in plants

机译:植物在环境胁迫适应和胁迫记忆中的表观遗传和基于染色质的机制

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Background: A healthy immune system requires immune cells that adapt rapidly to environmental challenges. This phenotypic plasticity can be mediated by transcriptional and epigenetic variability. Results: We apply a novel analytical approach to measure and compare transcriptional and epigenetic variability genome-wide across CD14+ CD16? monocytes, CD66b+ CD16+ neutrophils, and CD4+ CD45RA+ na?ve T cells from the same 125 healthy individuals. We discover substantially increased variability in neutrophils compared to monocytes and T cells. In neutrophils, genes with hypervariable expression are found to be implicated in key immune pathways and are associated with cellular properties and environmental exposure. We also observe increased sex-specific gene expression differences in neutrophils. Neutrophil-specific DNA methylation hypervariable sites are enriched at dynamic chromatin regions and active enhancers. Conclusions: Our data highlight the importance of transcriptional and epigenetic variability for the key role of neutrophils as the first responders to inflammatory stimuli. We provide a resource to enable further functional studies into the plasticity of immune cells, which can be accessed from: http://blueprint-dev.bioinfo.cnio.es/WP10/hypervariability.
机译:背景:健康的免疫系统需要能够快速适应环境挑战的免疫细胞。这种表型可塑性可以通过转录和表观遗传变异来介导。结果:我们采用一种新颖的分析方法来测量和比较整个CD14 + CD16上全基因组的转录和表观遗传变异性?来自相同的125名健康个体的单核细胞,CD66b + CD16 +中性粒细胞和CD4 + CD45RA +幼稚T细胞。我们发现与单核细胞和T细胞相比,嗜中性粒细胞的变异性大大增加。在嗜中性粒细胞中,发现具有高变表达的基因与关键的免疫途径有关,并且与细胞特性和环境暴露有关。我们还观察到嗜中性粒细胞的性别特异性基因表达差异增加。中性粒细胞特异性DNA甲基化高变位点富集在动态染色质区域和活性增强子上。结论:我们的数据突出了转录和表观遗传变异对于嗜中性粒细胞作为炎症刺激的第一反应者的关键作用的重要性。我们提供了一种资源,可以对免疫细胞的可塑性进行进一步的功能研究,可以从以下网站访问:http://blueprint-dev.bioinfo.cnio.es/WP10/hypervariability。

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