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Long Noncoding RNAs in Plants
Annual Review of Plant Biology ( IF 23.9 ) Pub Date : 2021-06-18 , DOI: 10.1146/annurev-arplant-093020-035446
Andrzej T Wierzbicki 1 , Todd Blevins 2 , Szymon Swiezewski 3
Affiliation  

Plants have an extraordinary diversity of transcription machineries, including five nuclear DNA-dependent RNA polymerases. Four of these enzymes are dedicated to the production of long noncoding RNAs (lncRNAs), which are ribonucleic acids with functions independent of their protein-coding potential. lncRNAs display a broad range of lengths and structures, but they are distinct from the small RNA guides of RNA interference (RNAi) pathways. lncRNAs frequently serve as structural, catalytic, or regulatory molecules for gene expression. They can affect all elements of genes, including promoters, untranslated regions, exons, introns, and terminators, controlling gene expression at various levels, including modifying chromatin accessibility, transcription, splicing, and translation. Certain lncRNAs protect genome integrity, while others respond to environmental cues like temperature, drought, nutrients, and pathogens. In this review, we explain the challenge of defining lncRNAs, introduce the machineries responsible for their production, and organize this knowledge by viewing the functions of lncRNAs throughout the structure of a typical plant gene.

中文翻译:


植物中的长链非编码 RNA

植物具有异常多样的转录机制,包括五种依赖于核 DNA 的 RNA 聚合酶。其中四种酶专门用于生产长链非编码 RNA (lncRNA),这是一种核糖核酸,其功能与其蛋白质编码潜力无关。lncRNA 具有广泛的长度和结构,但它们与 RNA 干扰 (RNAi) 通路的小 RNA 向导不同。lncRNA 经常作为基因表达的结构、催化或调节分子。它们可以影响基因的所有元素,包括启动子、非翻译区、外显子、内含子和终止子,在各个层面控制基因表达,包括修改染色质的可及性、转录、剪接和翻译。某些 lncRNA 保护基因组完整性,而另一些则对温度、干旱、营养物质和病原体等环境线索做出反应。在这篇综述中,我们解释了定义 lncRNA 的挑战,介绍了负责其生产的机制,并通过查看 lncRNA 在整个典型植物基因结构中的功能来组织这些知识。

更新日期:2021-06-19
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