Guangxi Key Laboratory of Sugarcane Biology, College of Agriculture, Guangxi University, Nanning 530004, China.
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangxi University, Nanning 530004, China.
Int J Mol Sci. 2024 Oct 4;25(19):10688. doi: 10.3390/ijms251910688.
Sugarcane smut caused by represents the most destructive disease in the sugarcane industry, causing host hormone disruption and producing a black whip-like sorus in the apex of the stalk. In this study, the gibberellin metabolic pathway was found to respond to infection, and the contents of bioactive gibberellins were significantly reduced in the leaves of diseased plants. The gibberellin receptor gene was identified and significantly downregulated. ScGID1 localized in both the nucleus and cytoplasm and had the highest expression level in the leaves. Eight proteins that interact with ScGID1 were screened out using a yeast two-hybrid assay. Novel DELLA proteins named ScGAI1a and ScGA20ox2, key enzymes in GA biosynthesis, were both found to interact with ScGID1 in a gibberellin-independent manner. Transcription factor trapping with a yeast one-hybrid system identified 50 proteins that interacted with the promoter of , among which ScS1FA and ScPLATZ inhibited transcription, while ScGDSL promoted transcription. Overexpression of in transgenic plants could increase plant height and promote flowering. These results not only contribute to improving our understanding of the metabolic regulatory network of sugarcane gibberellin but also expand our knowledge of the interaction between sugarcane and pathogens.
由引起的甘蔗黑粉病是甘蔗产业中最具破坏性的病害,它会导致宿主激素紊乱,并在茎的顶端产生黑色鞭状的分生孢子。在这项研究中,发现赤霉素代谢途径对感染有反应,并且患病植物叶片中的生物活性赤霉素含量显著降低。鉴定出赤霉素受体基因,并显著下调。ScGID1 定位于细胞核和细胞质中,在叶片中表达水平最高。使用酵母双杂交试验筛选出 8 种与 ScGID1 相互作用的蛋白质。新型的 DELLA 蛋白 ScGAI1a 和 ScGA20ox2,它们是 GA 生物合成的关键酶,都以赤霉素非依赖的方式与 ScGID1 相互作用。利用酵母单杂交系统进行转录因子捕获,鉴定出与启动子相互作用的 50 种蛋白,其中 ScS1FA 和 ScPLATZ 抑制转录,而 ScGDSL 则促进转录。在转基因 植物中过表达 可以增加株高并促进开花。这些结果不仅有助于提高我们对甘蔗赤霉素代谢调控网络的理解,也扩展了我们对甘蔗与病原体相互作用的认识。