State Key Laboratory of Crop Stress Biology for Arid Area, College of Horticulture, Northwest A&F University, Yangling, Xianyang 712100, China.
Int J Mol Sci. 2024 May 13;25(10):5314. doi: 10.3390/ijms25105314.
Aliphatic glucosinolates are an abundant group of plant secondary metabolites in Brassica vegetables, with some of their degradation products demonstrating significant anti-cancer effects. The transcription factors MYB28 and MYB29 play key roles in the transcriptional regulation of aliphatic glucosinolates biosynthesis, but little is known about whether BoMYB28 and BoMYB29 are also modulated by upstream regulators or how, nor their gene regulatory networks. In this study, we first explored the hierarchical transcriptional regulatory networks of MYB28 and MYB29 in a model plant, then systemically screened the regulators of the three homologs in cabbage using a yeast one-hybrid. Furthermore, we selected a novel RNA binding protein, BoRHON1, to functionally validate its roles in modulating aliphatic glucosinolates biosynthesis. Importantly, BoRHON1 induced the accumulation of all detectable aliphatic and indolic glucosinolates, and the net photosynthetic rates of overexpression lines were significantly increased. Interestingly, the growth and biomass of these overexpression lines of remained the same as those of the control plants. BoRHON1 was shown to be a novel, potent, positive regulator of glucosinolates biosynthesis, as well as a novel regulator of normal plant growth and development, while significantly increasing plants' defense costs.
脂肪族芥子油苷是芸薹属蔬菜中一类丰富的植物次生代谢物,其一些降解产物具有显著的抗癌作用。转录因子 MYB28 和 MYB29 在脂肪族芥子油苷生物合成的转录调控中发挥关键作用,但人们对 BoMYB28 和 BoMYB29 是否也受到上游调节剂的调控以及如何受到调控知之甚少,也不知道它们的基因调控网络。在这项研究中,我们首先在模式植物中探索了 MYB28 和 MYB29 的层次转录调控网络,然后使用酵母单杂交系统筛选了白菜中三个同源物的调节剂。此外,我们选择了一种新型 RNA 结合蛋白 BoRHON1,以验证其在调节脂肪族芥子油苷生物合成中的作用。重要的是,BoRHON1 诱导所有可检测到的脂肪族和吲哚族芥子油苷的积累,并且过表达系的净光合速率显著增加。有趣的是,这些过表达系的生长和生物量与对照植物相同。BoRHON1 被证明是芥子油苷生物合成的一个新的、有效、正向的调节剂,也是植物正常生长和发育的一个新的调节剂,同时显著增加了植物的防御成本。