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The role of epigenetic processes in controlling flowering time in plants exposed to stress

机译:表观遗传过程在控制胁迫下植物开花时间中的作用

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Plants interact with their environment by modifying gene expression patterns. One mechanism for this interaction involves epigenetic modifications that affect a number of aspects of plant growth and development. Thus, the epigenome is highly dynamic in response to environmental cues and developmental changes. Flowering is controlled by a set of genes that are affected by environmental conditions through an alteration in their expression pattern. This ensures the production of flowers even when plants are growing under adverse conditions, and thereby enhances transgenerational seed production. In this review recent findings on the epigenetic changes associated with flowering in Arabidopsis thaliana grown under abiotic stress conditions such as cold, drought, and high salinity are discussed. These epigenetic modifications include DNA methylation, histone modifications, and the production of micro RNAs (miRNAs) that mediate epigenetic modifications. The roles played by the phytohormones abscisic acid (ABA) and auxin in chromatin remodelling are also discussed. It is shown that there is a crucial relationship between the epigenetic modifications associated with floral initiation and development and modifications associated with stress tolerance. This relationship is demonstrated by the common epigenetic pathways through which plants control both flowering and stress tolerance, and can be used to identify new epigenomic players.
机译:植物通过修饰基因表达模式与环境相互作用。这种相互作用的一种机制涉及影响植物生长和发育的许多方面的表观遗传修饰。因此,表观基因组响应环境提示和发育变化是高度动态的。开花受一组基因控制,这些基因通过改变表达方式而受到环境条件的影响。即使植物在不利条件下生长,这也可以确保鲜花的生产,从而提高了转基因种子的生产。在这篇综述中,讨论了与在非生物胁迫条件下(如寒冷,干旱和高盐度)生长的拟南芥开花相关的表观遗传变化的最新发现。这些表观遗传修饰包括DNA甲基化,组蛋白修饰和介导表观遗传修饰的微小RNA(miRNA)的产生。还讨论了植物激素脱落酸(ABA)和生长素在染色质重塑中的作用。结果表明,与花序萌发和发育相关的表观遗传修饰与与胁迫耐受性相关的修饰之间存在着至关重要的关系。这种关系由植物控制开花和胁迫耐受性的常见表观遗传途径证明,并可用于鉴定新的表观基因组参与者。

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