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超越核酸的一级结构:表观遗传学和非经典结构在植物生长调控及应激反应中的潜在作用

Beyond the Primary Structure of Nucleic Acids: Potential Roles of Epigenetics and Noncanonical Structures in the Regulations of Plant Growth and Stress Responses.

作者信息

Volná Adriana, Bartas Martin, Nezval Jakub, Pech Radomír, Pečinka Petr, Špunda Vladimír, Červeň Jiří

机构信息

Department of Physics, Faculty of Science, University of Ostrava, Ostrava, Czech Republic.

Department of Biology and Ecology, Faculty of Science, University of Ostrava, Ostrava, Czech Republic.

出版信息

Methods Mol Biol. 2023;2642:331-361. doi: 10.1007/978-1-0716-3044-0_18.

Abstract

Epigenetics deals with changes in gene expression that are not caused by modifications in the primary sequence of nucleic acids. These changes beyond primary structures of nucleic acids not only include DNA/RNA methylation, but also other reversible conversions, together with histone modifications or RNA interference. In addition, under particular conditions (such as specific ion concentrations or protein-induced stabilization), the right-handed double-stranded DNA helix (B-DNA) can form noncanonical structures commonly described as "non-B DNA" structures. These structures comprise, for example, cruciforms, i-motifs, triplexes, and G-quadruplexes. Their formation often leads to significant differences in replication and transcription rates. Noncanonical RNA structures have also been documented to play important roles in translation regulation and the biology of noncoding RNAs. In human and animal studies, the frequency and dynamics of noncanonical DNA and RNA structures are intensively investigated, especially in the field of cancer research and neurodegenerative diseases. In contrast, noncanonical DNA and RNA structures in plants have been on the fringes of interest for a long time and only a few studies deal with their formation, regulation, and physiological importance for plant stress responses. Herein, we present a review focused on the main fields of epigenetics in plants and their possible roles in stress responses and signaling, with special attention dedicated to noncanonical DNA and RNA structures.

摘要

表观遗传学研究的是并非由核酸一级序列修饰所引起的基因表达变化。这些核酸一级结构之外的变化不仅包括DNA/RNA甲基化,还包括其他可逆转化,以及组蛋白修饰或RNA干扰。此外,在特定条件下(如特定离子浓度或蛋白质诱导的稳定性),右手双螺旋DNA(B-DNA)可形成通常被称为“非B-DNA”结构的非经典结构。这些结构包括,例如十字形、i-基序、三链体和G-四链体。它们的形成常常导致复制和转录速率的显著差异。非经典RNA结构也被证明在翻译调控和非编码RNA生物学中发挥重要作用。在人类和动物研究中,人们深入研究了非经典DNA和RNA结构的频率和动态,尤其是在癌症研究和神经退行性疾病领域。相比之下,植物中的非经典DNA和RNA结构长期以来一直处于研究边缘,只有少数研究涉及其形成、调控以及对植物应激反应的生理重要性。在此,我们发表一篇综述,重点关注植物表观遗传学的主要领域及其在应激反应和信号传导中的可能作用,特别关注非经典DNA和RNA结构。

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