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Epigenetic control of gene regulation in plants.

机译:植物基因调控的表观遗传控制。

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摘要

In eukaryotes, including plants, the genome is compacted into chromatin, which forms a physical barrier for gene transcription. Therefore, mechanisms that alter chromatin structure play an essential role in gene regulation. When changes in the chromatin states are inherited trough mitotic or meiotic cell division, the mechanisms responsible for these changes are defined as epigenetic. In this paper, we review data arising from genome-wide analysis of the epigenetic landscapes in different plant species to establish the correlation between specific epigenetic marks and transcription. In the subsequent sections, mechanisms of epigenetic control of gene regulation mediated by DNA-binding transcription factors and by transposons located in proximity to genes are illustrated. Finally, plant peculiarities for epigenetic control of gene regulation and future perspectives in this research area are discussed. This article is part of a Special Issue entitled: Epigenetic Control of cellular and developmental processes in plants.
机译:在包括植物在内的真核生物中,基因组被压缩成染色质,从而形成了基因转录的物理屏障。因此,改变染色质结构的机制在基因调控中起着至关重要的作用。当染色质状态的变化通过有丝分裂或减数分裂细胞分裂遗传时,负责这些变化的机制被定义为表观遗传的。在本文中,我们回顾了不同植物物种的表观遗传景观的全基因组分析数据,以建立特定表观遗传标记与转录之间的相关性。在随后的部分中,说明了由DNA结合转录因子和位于基因附近的转座子介导的基因调控的表观遗传控制机制。最后,讨论了用于基因调控的表观遗传控制的植物特性以及该研究领域的未来前景。本文是《特刊》的一部分,题为:植物细胞和发育过程的表观遗传控制。

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