PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Capsicum baccatum
NAC Family
Species TF ID Description
PHT26243.1NAC family protein
PHT26312.1NAC family protein
PHT26785.1NAC family protein
PHT27049.1NAC family protein
PHT27407.1NAC family protein
PHT27492.1NAC family protein
PHT27496.1NAC family protein
PHT29510.1NAC family protein
PHT29571.1NAC family protein
PHT29794.1NAC family protein
PHT29836.1NAC family protein
PHT29882.1NAC family protein
PHT29884.1NAC family protein
PHT30127.1NAC family protein
PHT30232.1NAC family protein
PHT30282.1NAC family protein
PHT30466.1NAC family protein
PHT30759.1NAC family protein
PHT31575.1NAC family protein
PHT31576.1NAC family protein
PHT31594.1NAC family protein
PHT31597.1NAC family protein
PHT31708.1NAC family protein
PHT31709.1NAC family protein
PHT31772.1NAC family protein
PHT33624.1NAC family protein
PHT33626.1NAC family protein
PHT33866.1NAC family protein
PHT33877.1NAC family protein
PHT34680.1NAC family protein
PHT34821.1NAC family protein
PHT34822.1NAC family protein
PHT34969.1NAC family protein
PHT35039.1NAC family protein
PHT36069.1NAC family protein
PHT36117.1NAC family protein
PHT36436.1NAC family protein
PHT37229.1NAC family protein
PHT37230.1NAC family protein
PHT37236.1NAC family protein
PHT37309.1NAC family protein
PHT37341.1NAC family protein
PHT37399.1NAC family protein
PHT39688.1NAC family protein
PHT40006.1NAC family protein
PHT40562.1NAC family protein
PHT40581.1NAC family protein
PHT40582.1NAC family protein
PHT41656.1NAC family protein
PHT42166.1NAC family protein
PHT42347.1NAC family protein
PHT42502.1NAC family protein
PHT42708.1NAC family protein
PHT43523.1NAC family protein
PHT43749.1NAC family protein
PHT43771.1NAC family protein
PHT43772.1NAC family protein
PHT43824.1NAC family protein
PHT44084.1NAC family protein
PHT44314.1NAC family protein
PHT44404.1NAC family protein
PHT44443.1NAC family protein
PHT45038.1NAC family protein
PHT45453.1NAC family protein
PHT45590.1NAC family protein
PHT45591.1NAC family protein
PHT45689.1NAC family protein
PHT45693.1NAC family protein
PHT45721.1NAC family protein
PHT45835.1NAC family protein
PHT45838.1NAC family protein
PHT46039.1NAC family protein
PHT46144.1NAC family protein
PHT46257.1NAC family protein
PHT46420.1NAC family protein
PHT46561.1NAC family protein
PHT46909.1NAC family protein
PHT47722.1NAC family protein
PHT48091.1NAC family protein
PHT48291.1NAC family protein
PHT48969.1NAC family protein
PHT48970.1NAC family protein
PHT50285.1NAC family protein
PHT50584.1NAC family protein
PHT51171.1NAC family protein
PHT51172.1NAC family protein
PHT51295.1NAC family protein
PHT51819.1NAC family protein
PHT52410.1NAC family protein
PHT52660.1NAC family protein
PHT52667.1NAC family protein
PHT52857.1NAC family protein
PHT53490.1NAC family protein
PHT53523.1NAC family protein
PHT53538.1NAC family protein
PHT53988.1NAC family protein
PHT54752.1NAC family protein
PHT55063.1NAC family protein
PHT55370.1NAC family protein
PHT55590.1NAC family protein
PHT55923.1NAC family protein
PHT56327.1NAC family protein
PHT56515.1NAC family protein
PHT56568.1NAC family protein
PHT57061.1NAC family protein
PHT57763.1NAC family protein
PHT58136.1NAC family protein
PHT58260.1NAC family protein
PHT58587.1NAC family protein
PHT58733.1NAC family protein
PHT58971.1NAC family protein
PHT59681.1NAC family protein
PHT60561.1NAC family protein
NAC Family Introduction

NAM, ATAF, and CUC (NAC) transcription factors comprise a large protein family. Proteins of this family contain a highly conserved N-terminal DNA-binding domain and a variable C-terminal domain (Xie et al. 2000; Duval et al. 2002; Ernst et al. 2004; Olsen et al. 2005). NAC was originally derived from the names of three proteins, no apical meristem (NAM), ATAF1-2, and CUC2 (cup-shaped cotyledon), that contain a similar DNA-binding domain (Souer et al. 1996; Aida et al. 1997). The early reported NAC transcription factors are implicated in various aspects of plant development. A few examples are NAM from Petunia (Souer et al. 1996) and CUC1-2 (Aida et al. 1997) from Arabidopsis which have roles in controlling the formation of boundary cells of the meristem; NAP (Sablowski and Meyerowitz 1998) from Arabidopsis which acts as a target gene of AP3/PI and functions in the transition between cell division and cell expansion in stamens and petals; and AtNAC1 which mediates auxin signaling to promote lateral root development (Xie et al. 2000). Recently, a few NAC transcription factors were reported to play an essential role in regulating senescence, cell division, and wood formation (Ishida et al. 2000; Takada et al. 2001; Vroemen et al. 2003; Weir et al. 2004; Kubo et al. 2005; Kim et al. 2006; Zhong et al. 2006; Demura and Fukuda 2007; Ko et al. 2007; Mitsuda et al. 2007; Zhong et al. 2007).

NAM, ATAF, and CUC proteins were also found to participate in plant responses to pathogens, viral infections, and environmental stimuli (Xie et al. 1999; Ren et al. 2000; Collinge and Boller 2001; Kim et al. 2007). In Arabidopsis, three NAC genes, ANAC019, ANAC055, and ANAC072, were induced by drought, salinity, and/or low temperature (Tran et al. 2004), and the transgenic Arabidopsis plants overexpressing these genes showed improved stress tolerance compared to the wild type (Tran et al. 2004). Furthermore, proteins of these genes can bind to a ciselement containing CATGTG motif (Tran et al. 2004).

Fang Y, You J, Xie K, Xie W, Xiong L.
Systematic sequence analysis and identification of tissue-specific or stress-responsive genes of NAC transcription factor family in rice.
Mol Genet Genomics, 2008. 280(6): p. 547-63.
PMID: 18813954