Department of Plant and Soil Sciences & Delaware Biotechnology Institute, University of Delaware, Newark, DE 19711, USA.
Curr Opin Plant Biol. 2011 Apr;14(2):148-55. doi: 10.1016/j.pbi.2010.11.007. Epub 2010 Dec 13.
Epigenetic modifications in plants can be directed and mediated by small RNAs (sRNAs). This regulation is composed of a highly interactive network of sRNA-directed DNA methylation, histone, and chromatin modifications, all of which control transcription. Identification and functional characterization of components of the siRNA-directed DNA methylation pathway have provided insights into epigenetic pathways that form heterochromatin and into chromatin-based pathways for gene silencing, paramutation, genetic imprinting, and epigenetic reprogramming. Next-generation sequencing technologies have facilitated new discoveries and have helped create a basic blueprint of the plant epigenome. As the multiple layers of epigenetic regulation in plants are dissected, a more comprehensive understanding of the biological importance of epigenetic marks and states has been developed.
植物中的表观遗传修饰可以由小 RNA(sRNA)来定向和介导。这种调控由 sRNA 指导的 DNA 甲基化、组蛋白和染色质修饰的高度交互网络组成,所有这些都控制转录。siRNA 指导的 DNA 甲基化途径的组成部分的鉴定和功能特征提供了对形成异染色质的表观遗传途径以及基于染色质的基因沉默、副突变、遗传印记和表观遗传重编程途径的深入了解。下一代测序技术促进了新的发现,并帮助创建了植物表观基因组的基本蓝图。随着植物中多层次的表观遗传调控被剖析,人们对表观遗传标记和状态的生物学重要性有了更全面的认识。