Wang Xiao-Hong, Li Qing-Tian, Chen Hao-Wei, Zhang Wan-Ke, Ma Biao, Chen Shou-Yi, Zhang Jin-Song
BMC Plant Biol. 2014 Dec 3;14:339. doi: 10.1186/s12870-014-0339-7.
Trihelix transcription factor family is plant-specific and plays important roles in developmental processes. However, their function in abiotic stress response is largely unclear.
We studied one member GT-4 from Arabidopsis in relation to salt stress response. GT-4 expression is induced by salt stress and GT-4 protein is localized in nucleus and cytoplasm. GT-4 acts as a transcriptional activator and its C-terminal end is the activation domain. The protein can bind to the cis-elements GT-3 box, GT-3b box and MRE4. GT-4 confers enhanced salt tolerance in Arabidopsis likely through direct binding to the promoter and activation of Cor15A, in addition to possible regulation of other relevant genes. The gt-4 mutant shows salt sensitivity. TEM2, a member of AP2/ERF family was identified to interact with GT-4 in yeast two-hybrid, BiFC and Co-IP assays. Loss-of-function of TEM2 exerts no significant difference on salt tolerance or Cor15A expression in Arabidopsis. However, double mutant gt-4/tem2 shows greater sensitivity to salt stress and lower transcript level of Cor15A than gt-4 single mutant. GT-4 plus TEM2 can synergistically increase the promoter activity of Cor15A.
GT-4 interacts with TEM2 and then co-regulates the salt responsive gene Cor15A to improve salt stress tolerance.
三螺旋转录因子家族是植物特有的,在发育过程中发挥重要作用。然而,它们在非生物胁迫响应中的功能尚不清楚。
我们研究了拟南芥中的一个成员GT-4与盐胁迫响应的关系。GT-4的表达受盐胁迫诱导,GT-4蛋白定位于细胞核和细胞质中。GT-4作为转录激活因子,其C末端为激活结构域。该蛋白可与顺式元件GT-3盒、GT-3b盒和MRE4结合。GT-4可能通过直接结合启动子并激活Cor15A,以及可能对其他相关基因的调控,赋予拟南芥增强的耐盐性。gt-4突变体表现出盐敏感性。在酵母双杂交、BiFC和Co-IP实验中,AP2/ERF家族成员TEM2被鉴定为与GT-4相互作用。TEM2功能缺失对拟南芥的耐盐性或Cor15A表达没有显著影响。然而,双突变体gt-4/tem2比gt-4单突变体对盐胁迫表现出更高的敏感性,Cor15A的转录水平更低。GT-4与TEM2协同作用可增加Cor15A的启动子活性。
GT-4与TEM2相互作用,共同调节盐响应基因Cor15A,以提高盐胁迫耐受性。