Key Laboratory of Horticultural Plant Biology (MOE), College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan 430070, China.
Plant Cell Physiol. 2022 Jan 25;63(1):19-29. doi: 10.1093/pcp/pcab135.
C-repeat (CRT) binding factors (CBFs) are well known to act as crucial transcription factors that function in cold stress response. Arginine decarboxylase (ADC)- mediated putrescine (Put) biosynthesis has been reported to be activated in plants exposed to cold conditions, but it remains elusive whether CBFs can regulate ADC expression and Put accumulation. In this study, we show that cold upregulated ADC gene (Citrus sinensis ADC;CsADC) and elevated endogenous Put content in sweet orange (C.sinensis). The promoter of CsADC contains two CRT sequences that are canonical elements recognized by CBFs. Sweet orange genome contains four CBFs (CsCBF1-4), in which CsCBF1 was significantly induced by cold. CsCBF1, located in the nucleus, was demonstrated to bind directly and specifically to the promoter of CsADC and acted as a transcriptional activator. Overexpression of CsCBF1 led to notable elevation of CsADC and Put levels in sweet orange transgenic plants, along with remarkably enhanced cold tolerance, relative to the wild type. However, pretreatment with D-arginine, an ADC inhibitor, caused a prominent reduction of endogenous Put levels in the overexpressing lines, accompanied by greatly compromised cold tolerance. Taken together, these results demonstrate that the CBF1 of sweet orange directly regulates ADC expression and modulates Put synthesis for orchestrating the cold tolerance. Our findings shed light on the transcriptional regulation of Put accumulation through targeting the ADC gene in the presence of cold stress. Meanwhile, this study illustrates a new mechanism underlying the CBF-mediated cold stress response.
C-重复(CRT)结合因子(CBFs)是众所周知的关键转录因子,在冷胁迫反应中发挥作用。已报道在植物暴露于寒冷条件下,精脒(Put)的生物合成被精脒脱羧酶(ADC)介导激活,但 CBFs 是否可以调节 ADC 表达和 Put 积累仍不清楚。在这项研究中,我们表明冷胁迫上调了甜橙(Citrus sinensis)ADC 基因(Citrus sinensis ADC;CsADC)和内源性 Put 含量。CsADC 的启动子包含两个 CRT 序列,这是 CBFs 识别的典型元件。甜橙基因组包含四个 CBFs(CsCBF1-4),其中 CsCBF1 受冷胁迫显著诱导。CsCBF1 位于细胞核内,被证明可以直接并特异性地与 CsADC 启动子结合,并作为转录激活剂发挥作用。过表达 CsCBF1 导致甜橙转基因植物中 CsADC 和 Put 水平显著升高,与野生型相比,冷胁迫耐受性显著增强。然而,用 ADC 抑制剂 D-精氨酸预处理会导致过表达系中内源性 Put 水平显著降低,同时冷胁迫耐受性大大降低。总之,这些结果表明,甜橙的 CBF1 直接调节 ADC 表达,并调节 Put 合成,以协调冷胁迫耐受性。我们的发现揭示了在冷胁迫下通过靶向 ADC 基因积累 Put 的转录调控。同时,这项研究阐明了 CBF 介导的冷应激反应的新机制。