Identification of up-regulated genes in flag leaves during rice grain filling and characterization of OsNAC5, a new ABA-dependent transcription factor

被引:0
作者
Raul A. Sperotto
Felipe K. Ricachenevsky
Guilherme L. Duarte
Tatiana Boff
Karina L. Lopes
Edilena R. Sperb
Michael A. Grusak
Janette Palma Fett
机构
[1] Universidade Federal do Rio Grande do Sul,Centro de Biotecnologia
[2] Universidade Federal do Rio Grande do Sul,Departamento de Botânica
[3] Baylor College of Medicine,Department of Pediatrics, USDA/ARS Children’s Nutrition Research Center
来源
Planta | 2009年 / 230卷
关键词
ABA-responsive; Correlation analyses; Flag leaves; Grain filling; Metal mobilization; Senescence; Suppression subtractive hybridization;
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摘要
Rice is a poor source of micronutrients such as iron and zinc. To help clarify the molecular mechanisms that regulate metal mobilization from leaves to developing seeds, we conducted suppression subtractive hybridization analysis in flag leaves of two rice cultivars. Flag leaves are the major source of remobilized metals for developing seeds. We isolated 78 sequences up-regulated in flag leaves at the grain filling stage relative to the panicle exertion stage. Differential expression of selected genes (encoding 7 transport proteins, the OsNAS3 enzyme and the OsNAC5 transcription factor) was confirmed by quantitative RT-PCR. We show that OsNAC5 expression is up-regulated by natural (aging) and induced senescence processes (dark, ABA application, high salinity, cold and Fe-deficiency) and its expression is not affected in the presence of 6-benzylaminopurine (a senescence inhibitor) under dark-induced senescence. Salt induction of OsNAC5 expression is abolished by nicotinamide, an inhibitor of ABA effects. This result and the presence of cis-acting elements in the promoter region of the OsNAC5 gene suggest an ABA-dependent regulation. Using four different rice cultivars, we show that OsNAC5 up-regulation is higher and earlier in flag leaves and panicles of IR75862 plants, which have higher seed concentrations of Fe, Zn and protein. We suggest that OsNAC5 is a novel senescence-associated ABA-dependent NAC transcription factor and its function could be related to Fe, Zn and amino acids remobilization from green tissues to seeds.
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页码:985 / 1002
页数:17
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共 440 条
  • [1] Abe H(2003)MYC2 (bHLH) and Plant Cell 15 63-78
  • [2] Urao T(1997)MYB2 (MYB) function as transcriptional activators in abscisic acid signaling Plant Cell 9 841-857
  • [3] Ito T(2005)Genes involved in organ separation in Plant J 42 567-585
  • [4] Seki M(2007): an analysis of the Plant Physiol 144 768-781
  • [5] Shinozaki K(2004) mutant Soil Sci Plant Nutr 50 1047-1054
  • [6] Yamaguchi-Shinozaki K(2009)Comparative transcriptome analysis reveals significant differences in gene expression and signalling pathways between developmental and dark/starvation-induced senescence in Proteomics 9 3100-3114
  • [7] Aida M(2006)Developmental genes have pleiotropic effects on plant morphology and source capacity, eventually impacting on seed protein content and productivity in pea Curr Opin Plant Biol 9 322-330
  • [8] Ishida T(2000): an important genetic resource for increasing zinc and iron concentration in modern cultivated wheat Crop Sci 40 436-443
  • [9] Fukaki H(2003)New changes in the plasma-membrane-associated proteome of rice roots under salt stress Annu Rev Plant Biol 54 183-206
  • [10] Fujisawa H(1996)Put the metal to the petal: metal uptake and transport throughout plants Proc Natl Acad Sci USA 93 6025-6030