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DNA methylation reprogramming in medaka fish, a promising animal model for environmental epigenetics research

机译:DNA甲基化在Medaka Fish中的重编程,是一个有前途的环境表观遗传学研究的动物模型

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DNA methylation is a major epigenetic modification that undergoes dramatic changes in two epigenetic reprogramming windows during development: first in preimplantation embryos and second in primordial germ cell (PGC) specification. In both windows, DNA methylation patterns are reprogrammed genome-wide, and the majority of inherited methylation marks are erased, generating cells with broad developmental potential. Recent studies reported that the reprogramming of genome methylation in medaka is similar to human and mouse, suggesting that medaka may serve as a suitable biomedical model for comparative studies focused on the epigenetic and transgenerational inheritance of phenotypic traits. In this mini review, we will discuss how somatic and germ cells in post-fertilization stage embryos are epigenetically reprogrammed in mammals and fishes with a particular focus on DNA methylation dynamics.
机译:DNA甲基化是一种主要的表观遗传改性,其在开发期间发生了两种表观遗传重编程窗口的显着变化:首先在Preclation胚胎和第二代原性生殖细胞(PGC)规格中。在两个窗口中,DNA甲基化模式被重新编程基因组宽,并且大多数遗传甲基化标记被擦除,产生具有广泛发育潜力的细胞。最近的研究报告说,麦卡卡的基因组甲基化重编程类似于人和小鼠,表明Medaka可以作为比较研究的合适生物医学模型,其集中于表型特征的表型和转基因遗传。在这次迷你评论中,我们将讨论施肥后胚胎胚胎中的细胞和生殖细胞在哺乳动物和鱼类上表现出哺乳动物和鱼类,特别关注DNA甲基化动力学。

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