Fang Xiang, Zhang Liuzi, Wang Liangju
College of Horticulture, Nanjing Agricultural University, Nanjing, China.
Front Plant Sci. 2022 Jun 2;13:915197. doi: 10.3389/fpls.2022.915197. eCollection 2022.
As a friendly plant growth regulator to the environment, 5-aminolevulinic acid (ALA) has been widely used in plant production, such as fruit coloration, stress resistance, and so on. Previous studies have identified some genes that have a function in the anthocyanin accumulation induced by ALA. However, the regulatory mechanism has not been well revealed. In the current study, we proposed that an ALA-responsive transcription factor, MdERF78, regulated anthocyanin accumulation. , overexpressed in apple peels or calli, resulted in a significant increase of anthocyanins, while interference had an opposite trend. Furthermore, the anthocyanin accumulation induced by overexpression was enhanced by exogenous ALA treatment, suggesting that MdERF78 was involved in the ALA-induced anthocyanin accumulation. Yeast one-hybrid and dual luciferase reporter assays revealed that MdERF78 bound to the promoters of and directly and activated their expressions. Additionally, MdERF78 interacted with MdMYB1 and enhanced the transcriptional activity of MdMYB1 to its target gene promoters. Based on these, it can be concluded that MdERF78 has a positive function in ALA-induced anthocyanin accumulation via the MdERF78-/ and MdERF78-MdMYB1- regulatory network. These findings provide new insights into the regulatory mechanism of ALA-promoted anthocyanin accumulation.
作为一种对环境友好的植物生长调节剂,5-氨基乙酰丙酸(ALA)已广泛应用于植物生产,如果实着色、抗逆性等方面。先前的研究已经鉴定出一些在ALA诱导的花青素积累中起作用的基因。然而,其调控机制尚未得到充分揭示。在本研究中,我们提出一种ALA响应转录因子MdERF78调控花青素积累。在苹果果皮或愈伤组织中过表达MdERF78导致花青素显著增加,而干扰则呈现相反趋势。此外,外源ALA处理增强了MdERF78过表达诱导的花青素积累,表明MdERF78参与了ALA诱导的花青素积累。酵母单杂交和双荧光素酶报告基因分析表明,MdERF78直接与和的启动子结合并激活它们的表达。此外,MdERF78与MdMYB1相互作用并增强MdMYB1对其靶基因启动子的转录活性。基于这些,可得出结论,MdERF78通过MdERF78- /和MdERF78-MdMYB1-调控网络在ALA诱导的花青素积累中具有正向作用。这些发现为ALA促进花青素积累的调控机制提供了新的见解。