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Control of Jasmonate Biosynthesis and Senescence by miR319 Targets

PLoS Biology · 2008 · Vol. 6(9) · pp. e230–e230
Carla SchommerJavier F. PalatnikPooja AggarwalAurore ChételatPilar CubasEdward E. FarmerUtpal NathDetlef Weigel

Abstract

Considerable progress has been made in identifying the targets of plant microRNAs, many of which regulate the stability or translation of mRNAs that encode transcription factors involved in development. In most cases, it is unknown, however, which immediate transcriptional targets mediate downstream effects of the microRNA-regulated transcription factors. We identified a new process controlled by the miR319-regulated clade of TCP (TEOSINTE BRANCHED/CYCLOIDEA/PCF) transcription factor genes. In contrast to other miRNA targets, several of which modulate hormone responses, TCPs control biosynthesis of the hormone jasmonic acid. Furthermore, we demonstrate a previously unrecognized effect of TCPs on leaf senescence, a process in which jasmonic acid has been proposed to be a critical regulator. We propose that miR319-controlled TCP transcription factors coordinate two sequential processes in leaf development: leaf growth, which they negatively regulate, and leaf senescence, which they positively regulate.

Plant Molecular Biology ResearchLight effects on plantsPlant Stress Responses and ToleranceBiologyJasmonic acidTranscription factorRegulatorSenescencemicroRNATranscription (linguistics)JasmonateRegulation of gene expressionCell biology

MeSH terms

Base SequenceCyclopentanesTranscription FactorsTranscription, GeneticSequence AlignmentCellular SenescenceArabidopsisGene Expression Regulation, PlantPlant LeavesRNA, PlantGene Expression ProfilingArabidopsis ProteinsMicroRNAsOxylipins

Funding

  • National Science Foundation
  • Howard Hughes Medical Institute
  • Indian Council of Medical Research
  • Council of Scientific and Industrial Research, India
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Bundesministerium für Bildung und Forschung
  • Max-Planck-Gesellschaft
Citations
890
FWCI
38.17
field-weighted impact
References
90
Percentile
100%
vs. same field & year
Citations per year
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