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动植物表观遗传机制的未探索潜力——理论思考

Unexplored potentials of epigenetic mechanisms of plants and animals-theoretical considerations.

作者信息

Seffer Istvan, Nemeth Zoltan, Hoffmann Gyula, Matics Robert, Seffer A Gergely, Koller Akos

机构信息

Seffer-Renner Medical Clinic, Budapest, Hungary.

Seffer-Renner Medical Clinic, Budapest, Hungary. ; Department of Pathophysiology and Gerontology, Medical School, and Szentagothai Res Centre, University of Pecs, Pecs, Hungary.

出版信息

Genet Epigenet. 2013 Jun 30;5:23-41. doi: 10.4137/GEG.S11752. eCollection 2013.

Abstract

Morphological and functional changes of cells are important for adapting to environmental changes and associated with continuous regulation of gene expressions. Genes are regulated-in part-by epigenetic mechanisms resulting in alternating patterns of gene expressions throughout life. Epigenetic changes responding to the environmental and intercellular signals can turn on/off specific genes, but do not modify the DNA sequence. Most epigenetic mechanisms are evolutionary conserved in eukaryotic organisms, and several homologs of epigenetic factors are present in plants and animals. Moreover, in vitro studies suggest that the plant cytoplasm is able to induce a nuclear reassembly of the animal cell, whereas others suggest that the ooplasm is able to induce condensation of plant chromatin. Here, we provide an overview of the main epigenetic mechanisms regulating gene expression and discuss fundamental epigenetic mechanisms and factors functioning in both plants and animals. Finally, we hypothesize that animal genome can be reprogrammed by epigenetic factors from the plant protoplast.

摘要

细胞的形态和功能变化对于适应环境变化很重要,并且与基因表达的持续调控相关。基因部分受到表观遗传机制的调控,导致一生中基因表达模式的交替变化。响应环境和细胞间信号的表观遗传变化可以开启/关闭特定基因,但不会改变DNA序列。大多数表观遗传机制在真核生物中是进化保守的,并且植物和动物中存在几种表观遗传因子的同源物。此外,体外研究表明,植物细胞质能够诱导动物细胞核重新组装,而其他研究表明,卵细胞质能够诱导植物染色质凝聚。在这里,我们概述了调控基因表达的主要表观遗传机制,并讨论了在植物和动物中起作用的基本表观遗传机制和因子。最后,我们假设动物基因组可以被来自植物原生质体的表观遗传因子重新编程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4b2/4222336/35c6b482331a/geg-5-2013-023f1.jpg

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