Department of Plant Science and Landscape Architecture, University of Maryland, College Park, Maryland 20742.
Plant Cell. 2014 Jan;26(1):438-53. doi: 10.1105/tpc.113.118927. Epub 2014 Jan 10.
Heat stress is a major environmental constraint for crop production worldwide. To respond to and cope with heat stress, plants synthesize heat shock proteins (HSPs), which are often molecular chaperones and are under the control of heat stress transcription factors (HSFs). Very little is known about the upstream regulators of HSFs. In a forward genetic screen for regulators of C-REPEAT BINDING FACTOR (CBF) gene expression (RCFs), we identified RCF2 and found that it is allelic to CPL1/FIERY2, which encodes a homolog of C-terminal domain phosphatase. Our results also showed that, in addition to being critical for cold stress tolerance, RCF2 is required for heat stress-responsive gene regulation and thermotolerance, because, compared with the wild type, the rcf2-1 mutant is hypersensitive to heat stress and because the reduced thermotolerance is correlated with lower expression of most of the 21 HSFs and some of the HSPs in the mutant plants. We found that RCF2 interacts with the NAC transcription factor NAC019 and that RCF2 dephosphorylates NAC019 in vivo. The nac019 mutant is more sensitive to heat stress than the wild type, and chromatin immunoprecipitation followed by quantitative PCR analysis revealed that NAC019 binds to the promoters of HSFA1b, HSFA6b, HSFA7a, and HSFC1. Overexpression of RCF2 or NAC019 in Arabidopsis thaliana increases thermotolerance. Together, our results suggest that, through dephosphorylation of NAC019, RCF2 is an integrator of high-temperature signal transduction and a mechanism for HSF and HSP activation.
热应激是全球作物生产的主要环境限制因素。为了应对和适应热应激,植物合成热休克蛋白(HSPs),这些蛋白通常是分子伴侣,受热应激转录因子(HSFs)的控制。关于 HSFs 的上游调节剂知之甚少。在 C-重复结合因子(CBF)基因表达(RCFs)的正向遗传筛选中,我们鉴定了 RCF2,并发现它与 CPL1/FIERY2 等位,该基因编码 C 端结构域磷酸酶的同源物。我们的结果还表明,RCF2 除了对冷胁迫耐受至关重要外,还需要进行热应激响应基因调控和耐热性,因为与野生型相比,rcf2-1 突变体对热应激敏感,并且耐热性降低与大多数 21 个 HSF 和一些 HSP 在突变体植物中的表达降低相关。我们发现 RCF2 与 NAC 转录因子 NAC019 相互作用,并且 RCF2 在体内使 NAC019 去磷酸化。nac019 突变体比野生型对热应激更敏感,并且染色质免疫沉淀定量 PCR 分析显示 NAC019 结合到 HSFA1b、HSFA6b、HSFA7a 和 HSFC1 的启动子上。在拟南芥中过表达 RCF2 或 NAC019 可提高耐热性。综上所述,我们的结果表明,RCF2 通过使 NAC019 去磷酸化,成为高温信号转导的整合因子,也是 HSF 和 HSP 激活的机制。