Regulatory small RNAs in plants.

EXS Pub Date : 2007-01-01 DOI:10.1007/978-3-7643-7439-6_5
Cameron Johnson, Venkatesan Sundaresan
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引用次数: 9

Abstract

The discovery of microRNAs in the last decade altered the paradigm that protein coding genes are the only significant components for the regulation of gene networks. Within a short period of time small RNA systems within regulatory networks of eukaryotic cells have been uncovered that will ultimately change the way we infer gene regulation networks from transcriptional profiling data. Small RNAs are involved in the regulation of global activities of genic regions via chromatin states, as inhibitors of 'selfish' sequences (transposons, retroviruses), in establishment or maintenance of tissue/organ identity, and as modulators of the activity of transcription factor as well as 'house keeping' genes. With this chapter we provide an overview of the central aspects of small RNA function in plants and the features that distinguish the different small RNAs. We furthermore highlight the use of computational prediction methods for identification of plant miRNAs/precursors and their targets and provide examples for the experimental validation of small RNA candidates that could represent trans-regulators of downstream genes. Lastly, the emerging concepts of small RNAs as modulators of gene expression constituting systems networks within different cells in a multicellular organism are discussed.

植物中的调节小rna。
在过去的十年中,微小rna的发现改变了蛋白质编码基因是基因网络调节的唯一重要组成部分的范式。在很短的时间内,真核细胞调控网络中的小RNA系统已经被发现,这将最终改变我们从转录谱数据推断基因调控网络的方式。小rna通过染色质状态参与调控基因区域的整体活动,作为“自私”序列(转座子、逆转录病毒)的抑制剂,在组织/器官身份的建立或维持中,以及作为转录因子活性的调节剂和“管家”基因。在本章中,我们概述了植物中小RNA功能的核心方面以及区分不同小RNA的特征。我们进一步强调了计算预测方法在植物miRNAs/前体及其靶标鉴定中的应用,并为可能代表下游基因反式调节因子的小RNA候选物的实验验证提供了例子。最后,小rna作为多细胞生物中不同细胞内构成系统网络的基因表达调节剂的新兴概念进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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