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A New Tomato NAC (NAM/ATAF1/2/CUC2) Transcription Factor, SlNAC4, Functions as a Positive Regulator of Fruit Ripening and Carotenoid Accumulation

Plant and Cell Physiology · 2013 · Vol. 55(1) · pp. 119–135
Mingku ZhuGuoping ChenShuang ZhouYun TuYi WangTingting DongZongli Hu

Abstract

Fruit ripening in tomato (Solanum lycopersicum) is a complicated development process affected by both endogenous hormonal and genetic regulators and external signals. Although the role of NOR, a member of the NAC domain family, in mediating tomato fruit ripening has been established, its underlying molecular mechanisms remain unclear. To explore further the role of NAC transcription factors in fruit ripening, we characterized a new tomato NAC domain protein, named SlNAC4, which shows high accumulation in sepal and at the onset of fruit ripening. Various stress treatments including wounding, NaCl, dehydration and low temperature significantly increased the expression of SlNAC4. Reduced expression of SlNAC4 by RNA interference (RNAi) in tomato resulted in delayed fruit ripening, suppressed Chl breakdown and decreased ethylene synthesis mediated mainly through reduced expression of ethylene biosynthesis genes of system-2, and reduced carotenoids by alteration of the carotenoid pathway flux. Transgenic tomato fruits also displayed significant down-regulation of multiple ripening-associated genes, indicating that SlNAC4 functions as a positive regulator of fruit ripening by affecting ethylene synthesis and carotenoid accumulation. Moreover, we also noted that SlNAC4 could not be induced by ethylene and may function upstream of the ripening regulator RIN and positively regulate its expression. Yeast two-hybrid assay further revealed that SlNAC4 could interact with both RIN and NOR protein. These results suggested that ethylene-dependent and -independent processes are regulated by SlNAC4 in the fruit ripening regulatory network.

Postharvest Quality and Shelf Life ManagementPlant Gene Expression AnalysisPlant Physiology and Cultivation StudiesRipeningGenetically modified tomatoSolanumEthyleneRegulatorTranscription factorCarotenoidBiologyRNA interferenceBiochemistry

MeSH terms

Amino Acid SequenceCarotenoidsChlorophyllCloning, MolecularEthylenesFruitModels, BiologicalMolecular Sequence DataMutationPhenotypePhylogenyPlant ProteinsStress, PhysiologicalTranscription FactorsSequence Alignment

Funding

  • National Natural Science Foundation of China
  • Natural Science Foundation of Chongqing
  • Fundamental Research Funds for the Central Universities
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