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Live-cell analysis of DNA methylation during sexual reproduction in Arabidopsis reveals context and sex-specific dynamics controlled by noncanonical RdDM

机译:拟南芥有性生殖过程中DNA甲基化的活细胞分析揭示了非典型RdDM控制的背景和性别特异性动力学

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摘要

Cytosine methylation is a key epigenetic mark in many organisms, important for both transcriptional control and genome integrity. While relatively stable during somatic growth, DNA methylation is reprogrammed genome-wide during mammalian reproduction. Reprogramming is essential for zygotic totipotency and to prevent transgenerational inheritance of epimutations. However, the extent of DNA methylation reprogramming in plants remains unclear. Here, we developed sensors reporting with single-cell resolution CG and non-CG methylation in Arabidopsis. Live imaging during reproduction revealed distinct and sex-specific dynamics for both contexts. We found that CHH methylation in the egg cell depends on DOMAINS REARRANGED METHYLASE 2 (DRM2) and RNA polymerase V (Pol V), two main actors of RNA-directed DNA methylation, but does not depend on Pol IV. Our sensors provide insight into global DNA methylation dynamics at the single-cell level with high temporal resolution and offer a powerful tool to track CG and non-CG methylation both during development and in response to environmental cues in all organisms with methylated DNA, as we illustrate in mouse embryonic stem cells.
机译:胞嘧啶甲基化是许多生物中重要的表观遗传标记,对转录控制和基因组完整性均至关重要。虽然在体细胞生长过程中相对稳定,但在哺乳动物繁殖过程中,DNA甲基化在全基因组范围内被重新编程。重新编程对于合子的全能性和防止突变的跨代遗传至关重要。但是,尚不清楚植物中DNA甲基化重编程的程度。在这里,我们开发了传感器报告拟南芥中具有单细胞分辨率CG和非CG甲基化的传感器。繁殖期间的实时成像揭示了两种情况下不同的性别特定动态。我们发现卵细胞中的CHH甲基化取决于DOMAINS重新排列的甲基化酶2(DRM2)和RNA聚合酶V(Pol V),这是RNA定向DNA甲基化的两个主要作用因子,但不取决于Pol IV。我们的传感器能​​够以高的时间分辨率洞察单细胞水平上的全球DNA甲基化动力学,并提供强大的工具来跟踪甲基化DNA的所有生物体在发育过程中以及响应环境线索时的CG和非CG甲基化,因为我们说明在小鼠胚胎干细胞中。

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