Department of Horticulture, Zijingang Campus, Zhejiang University, Hangzhou, China.
Department of Horticulture, College of Forestry, Henan University of Science and Technology, Luoyang, China.
Plant Cell Environ. 2020 Nov;43(11):2712-2726. doi: 10.1111/pce.13868. Epub 2020 Sep 15.
The induction of C-repeat binding factors (CBFs) is crucial for plant survival at low temperatures. Therefore, understanding the mechanisms that regulate CBF transcription is vital for the future development of crops with increased cold tolerance. Here, we provide evidence for the existence of a LONG HYPOCOTYL 5 (HY5)-MYB15-CBFs transcriptional cascade that plays a crucial role in the cold response in tomato. The exposure of tomato plants to cold (4°C) increased the levels of HY5, MYB15 and CBFs transcripts. Moreover, mutations in HY5 or MYB15 decreased the levels of CBF transcripts. In contrast, overexpression of HY5 or MYB15 increased CBF transcript abundance. Crucially, the HY5 transcription factor activated the expression of MYB15 by directly binding to the promoter region, while both HY5 and MYB15 activated the expression of CBF1, CBF2 and CBF3. Taken together, these data show that HY5 can directly regulate CBF transcript levels, and also influence CBF expression indirectly via MYB15. The coordinated action of HY5 and MYB15 allows precise regulation of CBF expression and subsequent cold tolerance. These findings provide an improved understanding of the molecular mechanisms affording transcriptional regulation of CBFs, which can be exploited in the future to enhance cold tolerance in crops.
植物在低温下生存的关键是诱导 C-repeat 结合因子(CBFs)的产生。因此,理解调节 CBF 转录的机制对于培育具有更高耐寒性的作物具有重要意义。在这里,我们提供了证据表明 LONG HYPOCOTYL 5(HY5)-MYB15-CBFs 转录级联在番茄的冷响应中起着至关重要的作用。番茄植株暴露在低温(4°C)下会增加 HY5、MYB15 和 CBFs 转录本的水平。此外,HY5 或 MYB15 的突变会降低 CBF 转录本的水平。相比之下,HY5 或 MYB15 的过表达会增加 CBF 转录本的丰度。至关重要的是,HY5 转录因子通过直接结合启动子区域激活 MYB15 的表达,而 HY5 和 MYB15 都能激活 CBF1、CBF2 和 CBF3 的表达。综上所述,这些数据表明 HY5 可以直接调节 CBF 转录本的水平,并且通过 MYB15 间接地影响 CBF 的表达。HY5 和 MYB15 的协调作用允许对 CBF 表达进行精确调节,从而提高植物的耐寒性。这些发现提供了对 CBFs 转录调控的分子机制的深入理解,可用于未来提高作物的耐寒性。