College of Agro-grassland Science, Nanjing Agricultural University, Nanjing, 210095, China.
Department of Plant Biology and Pathology, Rutgers, the State University of New Jersey, New Brunswick, NJ, 08901, USA.
Sci Rep. 2016 Jun 20;6:28021. doi: 10.1038/srep28021.
Heat stress transcription factor A2s (HsfA2s) are key regulators in plant response to high temperature. Our objectives were to isolate an HsfA2 gene (CtHsfA2b) from a warm-season grass species, African bermudagrass (Cynodon transvaalensis Burtt-Davy), and to determine the physiological functions and transcriptional regulation of HsfA2 for improving heat tolerance. Gene expression analysis revealed that CtHsfA2b was heat-inducible and exhibited rapid response to increasing temperature. Ectopic expression of CtHsfA2b improved heat tolerance in Arabidopsis and restored heat-sensitive defects of Arabidopsis hsfa2 mutant, which was demonstrated by higher survival rate and photosynthetic parameters, and lower electrolyte leakage in transgenic plants compared to the WT or hsfa2 mutant. CtHsfA2b transgenic plants showed elevated transcriptional regulation of several downstream genes, including those encoding ascorbate peroxidase (AtApx2) and heat shock proteins [AtHsp18.1-CI, AtHsp22.0-ER, AtHsp25.3-P and AtHsp26.5-P(r), AtHsp70b and AtHsp101-3]. CtHsfA2b was found to bind to the heat shock element (HSE) on the promoter of AtApx2 and enhanced transcriptional activity of AtApx2. These results suggested that CtHsfA2b could play positive roles in heat protection by up-regulating antioxidant defense and chaperoning mechanisms. CtHsfA2b has the potential to be used as a candidate gene to genetically modify cool-season species for improving heat tolerance.
热激转录因子 A2s(HsfA2s)是植物应对高温的关键调节因子。我们的目标是从暖季型草种非洲狗牙根(Cynodon transvaalensis Burtt-Davy)中分离出一个 HsfA2 基因(CtHsfA2b),并确定 HsfA2 的生理功能和转录调控,以提高耐热性。基因表达分析表明,CtHsfA2b 受热诱导,对温度升高表现出快速响应。CtHsfA2b 的异位表达提高了拟南芥的耐热性,并恢复了拟南芥 hsfa2 突变体的热敏感缺陷,表现为转基因植物的存活率和光合作用参数较高,电解质泄漏率较低,与 WT 或 hsfa2 突变体相比。CtHsfA2b 转基因植物表现出几个下游基因的转录调控上调,包括编码抗坏血酸过氧化物酶(AtApx2)和热休克蛋白[AtHsp18.1-CI、AtHsp22.0-ER、AtHsp25.3-P 和 AtHsp26.5-P(r)、AtHsp70b 和 AtHsp101-3]。发现 CtHsfA2b 可以与 AtApx2 启动子上的热激元件(HSE)结合,并增强 AtApx2 的转录活性。这些结果表明,CtHsfA2b 可以通过上调抗氧化防御和伴侣机制在热保护中发挥积极作用。CtHsfA2b 有可能被用作候选基因,通过遗传修饰冷季型物种来提高耐热性。