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高等植物中转座诱导 siRNA 生物发生中的 miRNAs。

miRNAs in the biogenesis of trans-acting siRNAs in higher plants.

机构信息

Monsanto Company, Chesterfield, MO 63017, USA.

出版信息

Semin Cell Dev Biol. 2010 Oct;21(8):798-804. doi: 10.1016/j.semcdb.2010.03.008. Epub 2010 Mar 30.

Abstract

Multicellular eukaryotes utilize many complex small RNA mechanisms to regulate gene expression from DNA modifications to RNA stability. RNA interference also regulates exogenous gene expression by degrading invading pathogen RNAs or preventing expression of foreign DNA incorporated into the host genome. Here we review the mechanisms for trans-acting (ta)-siRNA biogenesis and function, including pathways that utilize components of the miRNA and transitive RNAi defense. There are several distinguishing features of ta-siRNA pathways including the requirement for a miRNA-guided cleavage event that sets a processing register, RDR6 dependent dsRNA production, and DCL4 dependent processing to create unique, phased 21 nucleotide small RNAs. These phased small RNAs function to suppress target genes that only show similarity at the ta-siRNA recognition site, and act in trans to repress expression non-cell autonomously of specific target genes. Since the advent of high throughput sequencing technologies, phased siRNAs have been identified in a number of organisms [Heisel SE, Zhang Y, Allen E, Guo L, Reynolds TL, Yang X, et al. Characterization of unique small RNA populations from rice grain. PLoS One 2008;3:e2871. Zhao T, Li G, Mi S, Li S, Hannon GJ, Wang XJ, et al. A complex system of small RNAs in the unicellular green alga Chlamydomonas reinhardtii. Genes Dev 2007;21:1190-203. Johnson C, et al. Clusters and superclusters of phased small RNAs in the developing inflorescence of rice. Genome Res 2009;19:1429-40. Zhu QH, Spriggs A, Matthew L, Fan L, Kennedy G, Gubler F, et al. A diverse set of microRNAs and microRNA-like small RNAs in developing rice grains. Genome Res 2008;18:1456-65. Howell MD, Fahlgren N, Chapman EJ, Cumbie JS, Sullivan CM, Givan SA, et al. Genome-wide analysis of the RNA-DEPENDENT RNA POLYMERASE6/DICER-LIKE4 pathway in Arabidopsis reveals dependency on miRNA- and ta-siRNA-directed targeting. Plant Cell 2007;19:926-42.]. These include transcripts generated either from non-protein-coding or protein-coding transcripts, long imperfect dsRNA or through an unknown mechanism; therefore some of these may not necessarily be classified as canonical ta-siRNAs.

摘要

真核生物利用许多复杂的小 RNA 机制来调节基因表达,从 DNA 修饰到 RNA 稳定性。RNA 干扰还通过降解入侵病原体 RNA 或阻止整合到宿主基因组中的外源 DNA 的表达来调节外源基因表达。在这里,我们综述了反式作用(ta)-siRNA 的生物发生和功能机制,包括利用 miRNA 和转导 RNA 防御成分的途径。ta-siRNA 途径有几个区别特征,包括需要 miRNA 指导的切割事件来设定加工登记、RDR6 依赖性 dsRNA 产生以及 DCL4 依赖性加工以产生独特的、相位 21 个核苷酸的小 RNA。这些相移小 RNA 可抑制仅在 ta-siRNA 识别位点具有相似性的靶基因,并通过转位非细胞自主地抑制特定靶基因的表达。自高通量测序技术出现以来,已在许多生物体中鉴定出相移 siRNA [Heisel SE、Zhang Y、Allen E、Guo L、Reynolds TL、Yang X 等人。从水稻粒中鉴定出独特的小 RNA 群体。PLoS One 2008;3:e2871。Zhao T、Li G、Mi S、Li S、Hannon GJ、Wang XJ 等人。单细胞绿藻衣藻中的小 RNA 复杂系统。基因开发 2007;21:1190-203。Johnson C 等人。水稻营养芽发育过程中相移小 RNA 的簇和超簇。基因组研究 2009;19:1429-40。Zhu QH、Spriggs A、Matthew L、Fan L、Kennedy G、Gubler F 等人。发育中的水稻粒中多种微 RNA 和微 RNA 样小 RNA。基因组研究 2008;18:1456-65。Howell MD、Fahlgren N、Chapman EJ、Cumbie JS、Sullivan CM、Givan SA 等人。依赖 miRNA 和 ta-siRNA 靶向的 RNA 依赖性 RNA 聚合酶 6/DICER-LIKE4 途径在拟南芥中的全基因组分析揭示了对 miRNA 和 ta-siRNA 的依赖性。植物细胞 2007;19:926-42。]. 这些包括由非蛋白编码或蛋白编码转录本产生的转录本、长的不完美 dsRNA 或通过未知机制产生的转录本;因此,其中一些可能不一定被归类为典型的 ta-siRNA。

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