Wang Yicheng, Zhu Yansong, Jiang Huiyan, Mao Zuolin, Zhang Junkang, Fang Hongcheng, Liu Wenjun, Zhang Zongying, Chen Xuesen, Wang Nan
College of Horticulture, Shandong Agricultural University, Taian, 271000, Shandong, China.
State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing, 210095, China.
New Phytol. 2023 May;238(4):1516-1533. doi: 10.1111/nph.18779. Epub 2023 Mar 15.
The anthocyanin content is an important indicator of the nutritional value of most fruits, including apple (Malus domestica). Anthocyanin synthesis is coordinately regulated by light and various phytohormones. In this study on apple, we revealed the antagonistic relationship between light and brassinosteroid (BR) signaling pathways, which is mediated by BRASSINAZOLE-RESISTANT 1 (MdBZR1) and the B-box protein MdCOL6. The exogenous application of brassinolide inhibited the high-light-induced anthocyanin accumulation in red-fleshed apple seedlings, whereas increases in the light intensity decreased the endogenous BR content. The overexpression of MdBZR1 inhibited the anthocyanin synthesis in apple plants. An exposure to a high-light intensity induced the degradation of dephosphorylated MdBZR1, resulting in functional impairment. MdBZR1 was identified as an upstream repressor of MdCOL6, which promotes anthocyanin synthesis in apple plants. Furthermore, MdBZR1 interacts with MdCOL6 to attenuate its ability to activate MdUFGT and MdANS transcription. Thus, MdBZR1 negatively regulates MdCOL6-mediated anthocyanin accumulation. Our study findings have clarified the molecular basis of the integration of light and BR signals during the regulation of anthocyanin biosynthesis, which is an important process influencing fruit quality.
花青素含量是包括苹果(Malus domestica)在内的大多数水果营养价值的重要指标。花青素的合成受光照和多种植物激素的协同调控。在这项关于苹果的研究中,我们揭示了光信号通路与油菜素内酯(BR)信号通路之间的拮抗关系,该关系由抗油菜素唑1(MdBZR1)和B-box蛋白MdCOL6介导。外源施加油菜素内酯可抑制红肉苹果幼苗中高光诱导的花青素积累,而光照强度增加会降低内源BR含量。MdBZR1的过表达抑制了苹果植株中的花青素合成。高光强度处理会诱导去磷酸化的MdBZR1降解,导致其功能受损。MdBZR1被鉴定为MdCOL6的上游抑制因子,MdCOL6可促进苹果植株中的花青素合成。此外,MdBZR1与MdCOL6相互作用,减弱其激活MdUFGT和MdANS转录的能力。因此,MdBZR1负调控MdCOL6介导的花青素积累。我们的研究结果阐明了花青素生物合成调控过程中光信号与BR信号整合的分子基础,这是影响果实品质的重要过程。