MicroRNA-Directed Regulation of ArabidopsisAUXIN RESPONSE FACTOR17Is Essential for Proper Development and Modulates Expression of Early Auxin Response Genes
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Open Access
- 29 April 2005
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 17 (5) , 1360-1375
- https://doi.org/10.1105/tpc.105.031716
Abstract
The phytohormone auxin plays critical roles during plant growth, many of which are mediated by the auxin response transcription factor (ARF) family. MicroRNAs (miRNAs), endogenous 21-nucleotide riboregulators, target several mRNAs implicated in auxin responses. miR160 targets ARF10, ARF16, and ARF17, three of the 23 Arabidopsis thaliana ARF genes. Here, we describe roles of miR160-directed ARF17 posttranscriptional regulation. Plants expressing a miRNA-resistant version of ARF17 have increased ARF17 mRNA levels and altered accumulation of auxin-inducible GH3-like mRNAs, YDK1/GH3.2, GH3.3, GH3.5, and DFL1/GH3.6, which encode auxin-conjugating proteins. These expression changes correlate with dramatic developmental defects, including embryo and emerging leaf symmetry anomalies, leaf shape defects, premature inflorescence development, altered phyllotaxy along the stem, reduced petal size, abnormal stamens, sterility, and root growth defects. These defects demonstrate the importance of miR160-directed ARF17 regulation and implicate ARF17 as a regulator of GH3-like early auxin response genes. Many of these defects resemble phenotypes previously observed in plants expressing viral suppressors of RNA silencing and plants with mutations in genes important for miRNA biogenesis or function, providing a molecular rationale for phenotypes previously associated with more general disruptions of miRNA function.Keywords
This publication has 98 references indexed in Scilit:
- Conserved Seed Pairing, Often Flanked by Adenosines, Indicates that Thousands of Human Genes are MicroRNA TargetsCell, 2005
- PIN-FORMED1andPINOIDregulate boundary formation and cotyledon development inArabidopsisembryogenesisDevelopment, 2004
- The functions of animal microRNAsNature, 2004
- Aux/IAA Proteins Contain a Potent Transcriptional Repression DomainPlant Cell, 2004
- Genome-Wide Insertional Mutagenesis of Arabidopsis thalianaScience, 2003
- The Roles of Auxin Response Factor Domains in Auxin-Responsive TranscriptionPlant Cell, 2003
- CARPEL FACTORY, a Dicer Homolog, and HEN1, a Novel Protein, Act in microRNA Metabolism in Arabidopsis thalianaCurrent Biology, 2002
- MicroRNAs in plantsGenes & Development, 2002
- pBINPLUS: An improved plant transformation vector based on pBIN19Transgenic Research, 1995
- The axr4 auxin‐resistant mutants of Arabidopsis thaliana define a gene important for root gravitropism and lateral root initiationThe Plant Journal, 1995