Department of Horticulture, Zhejiang University, Hangzhou, 310058, Zhejiang, People's Republic of China.
The Key Laboratory of Horticultural Plant Growth, Development and Quality Improvement, The Ministry of Agriculture of China, Hangzhou, 310058, Zhejiang, People's Republic of China.
Plant Mol Biol. 2019 Apr;99(6):575-586. doi: 10.1007/s11103-019-00837-7. Epub 2019 Feb 12.
PpCBF2 directly binds to the promoters of PpCBF3 and PpCBF4 to activate their expressions and selectively regulates PpDAMs during the leaf bud endodormancy process of 'Wonhwang' pear (Pyrus pyrifolia). Endodormancy is critical for temperate plant survival under freezing winter conditions, and low temperature is a vital environmental factor in endodormancy regulation. A C-repeat binding factor (CBF) has been found to regulate important DAM transcription factors during endodormancy in pear (Pyrus pyrifolia). In this study, we analyzed the regulation of pear DAM genes by CBFs in further detail. Four CBF and three DAM genes were identified in the pear cultivar 'Wonhwang'. Under natural conditions, PpDAM1 expression decreased from the start of chilling accumulation, while the other two DAM and three CBF genes peaked during endodormancy release. Under chilling treatment, the expressions of PpDAM1, PpDAM2 and PpCBF1 genes were similar to those under natural conditions. Different biochemical methods revealed that PpCBF2/4 can bind to the promoter of PpDAM1 and activate its expression and that PpCBF1/4 can activate PpDAM3. Interestingly, we found that PpCBF2 can activate PpCBF3/4 transcription by directly binding to their promoters. The ICE-CBF regulon is conserved in some plants; three ICE genes were identified in pear, but their expressions did not obviously change under natural and artificial chilling conditions. On the contrary, the selective transcriptional induction of PpCBFs by PpICE1s was observed in a dual-luciferase assay. Considering all these results, we propose that the PpCBF1-PpDAM2 regulon mainly responds to low temperature during endodormancy regulation, with further post-translational regulation by PpICE3. Our results provide basic information on CBF genes functional redundancy and differentiation and demonstrate that the CBF-DAM signaling pathway is involved in the pear bud endodormancy process.
PpCBF2 直接与 PpCBF3 和 PpCBF4 的启动子结合,激活它们的表达,并在‘Wonhwang’梨(Pyrus pyrifolia)的芽休眠过程中选择性地调节 PpDAMs。休眠对于温带植物在冬季低温条件下的生存至关重要,低温是休眠调节的重要环境因素。在梨(Pyrus pyrifolia)的休眠过程中,已经发现 C-repeat 结合因子(CBF)调节重要的 DAM 转录因子。在本研究中,我们进一步分析了 CBF 对梨 DAM 基因的调节。在梨品种‘Wonhwang’中鉴定出 4 个 CBF 和 3 个 DAM 基因。在自然条件下,PpDAM1 的表达从冷积累开始就下降,而另外两个 DAM 和三个 CBF 基因在休眠解除时达到峰值。在冷处理下,PpDAM1、PpDAM2 和 PpCBF1 基因的表达与自然条件下相似。不同的生化方法表明,PpCBF2/4 可以与 PpDAM1 的启动子结合,激活其表达,而 PpCBF1/4 可以激活 PpDAM3。有趣的是,我们发现 PpCBF2 可以通过直接与它们的启动子结合来激活 PpCBF3/4 的转录。ICE-CBF 调控因子在一些植物中是保守的;在梨中鉴定出 3 个 ICE 基因,但它们的表达在自然和人工冷处理条件下没有明显变化。相反,在双荧光素酶测定中观察到 PpICE1s 对 PpCBFs 的选择性转录诱导。考虑到所有这些结果,我们提出 PpCBF1-PpDAM2 调控子主要响应休眠期间的低温,进一步由 PpICE3 进行翻译后调节。我们的研究结果提供了 CBF 基因功能冗余和分化的基本信息,并表明 CBF-DAM 信号通路参与了梨芽休眠过程。