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Highly Specific Gene Silencing by Artificial MicroRNAs in <i>Arabidopsis</i>

The Plant Cell · 2006 · Vol. 18(5) · pp. 1121–1133
Rebecca SchwabStephan OssowskiMarkus RiesterNorman WarthmannDetlef Weigel

Abstract

Plant microRNAs (miRNAs) affect only a small number of targets with high sequence complementarity, while animal miRNAs usually have hundreds of targets with limited complementarity. We used artificial miRNAs (amiRNAs) to determine whether the narrow action spectrum of natural plant miRNAs reflects only intrinsic properties of the plant miRNA machinery or whether it is also due to past selection against natural miRNAs with broader specificity. amiRNAs were designed to target individual genes or groups of endogenous genes. Like natural miRNAs, they had varying numbers of target mismatches. Previously determined parameters of target selection for natural miRNAs could accurately predict direct targets of amiRNAs. The specificity of amiRNAs, as deduced from genome-wide expression profiling, was as high as that of natural plant miRNAs, supporting the notion that extensive base pairing with targets is required for plant miRNA function. amiRNAs make an effective tool for specific gene silencing in plants, especially when several related, but not identical, target genes need to be downregulated. We demonstrate that amiRNAs are also active when expressed under tissue-specific or inducible promoters, with limited nonautonomous effects. The design principles for amiRNAs have been generalized and integrated into a Web-based tool (http://wmd.weigelworld.org).

Plant Molecular Biology ResearchChromosomal and Genetic VariationsPlant Virus Research StudiesBiologyGene silencingmicroRNAGeneComputational biologyComplementarity (molecular biology)GeneticsArabidopsisPromoterGene expression

MeSH terms

PhenotypeSoftwareArabidopsisSequence Analysis, RNARNA, PlantBase PairingGene SilencingMicroRNAs

Funding

  • Deutsche Forschungsgemeinschaft
  • Max-Planck-Gesellschaft
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1,371
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References
MicroRNAs
Cell · 2004 · 34,668 citations
The control of the false discovery rate in multiple testing under dependency
The Annals of Statistics · 2001 · 10,644 citations
Principles of MicroRNA–Target Recognition
PLoS Biology · 2005 · 2,358 citations
EMBOSS: The European Molecular Biology Open Software Suite
Trends in Genetics · 2000 · 9,735 citations
Expression profiling reveals off-target gene regulation by RNAi
Nature Biotechnology · 2003 · 2,360 citations
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