Dai Jia-Meng, Zhang Jian-Duo, Liu Xin, Zhang Ling-Fang, Wang Jin, Xu Yong, Yang Guang-Yu, Li Jing, Chen Ming-Li, Hu Qiu-Fen
Yunnan Key Laboratory of Tobacco Chemistry, China Tobacco Yunnan Industrial Co., Ltd, Kunming, 650231, P.R. China.
Key Laboratory of Chemistry in Ethnic Medicinal Resources, State Ethnic Affairs Commission & Ministry of Education, Yunnan Minzu University, Kunming, 650031, P. R. China.
Sci Rep. 2025 Apr 25;15(1):14581. doi: 10.1038/s41598-025-98745-y.
The content of terpenoids in tobacco can alter its resistance to TMV. NtSPS1, a pivotal structural gene in tobacco, is capable to regulate the terpenoid content. In this study, we investigated the effect of NtSPS1 knockout in HD on the content of terpenoids and the anti-TMV activity of this mutant using gene editing, widely targeted metabolomics, network pharmacology, and molecular docking. 48 terpenoids (six up-regulated and five down-regulated) in NtSPS1 knockout tobacco compared with WT leaves. Notably, solanesol was remarkable downregulation which was lowered by fourfold and compounds 1 (logFC = 18.2), 8 (logFC = 16.7) were significant upregulation between the mutants and wild-type line leaves. The 46 terpenoid's target network encompassed 150 nodes, 509 edges and their underlying mechanisms in the therapeutic management of TMV are discussed. Furthermore, the network pharmacology and molecular docking revealed that compounds 16, 18, 23, 27, and 36 exhibited significant affinity in their respective interactions. Ultimately, five compounds were assayed for their anti-TMV effects, noteworthily, compounds 36 showed potential anti-TMV activity. Above all, we adopted a multifaceted approach to gain a comprehensive understanding of the terpenoid content and anti-TMV properties in NtSPS1 knockout HD. It enlightens the therapeutic potential of NtSPS1 knockout tobacco and it is helpful to find undescribed anti-TMV activity inhibitors, as well as searching for new anti-TMV candidates from the mutants.
烟草中萜类化合物的含量会改变其对烟草花叶病毒(TMV)的抗性。NtSPS1是烟草中的一个关键结构基因,能够调节萜类化合物的含量。在本研究中,我们利用基因编辑、广泛靶向代谢组学、网络药理学和分子对接技术,研究了HD中NtSPS1基因敲除对萜类化合物含量以及该突变体抗TMV活性的影响。与野生型叶片相比,NtSPS1基因敲除烟草中有48种萜类化合物(6种上调,5种下调)。值得注意的是,茄尼醇显著下调,降低了四倍,而突变体与野生型品系叶片之间的化合物1(logFC = 18.2)、化合物8(logFC = 16.7)显著上调。讨论了46种萜类化合物的靶标网络,该网络包含150个节点、509条边及其在TMV治疗管理中的潜在机制。此外,网络药理学和分子对接显示,化合物16、18、23、27和36在各自的相互作用中表现出显著的亲和力。最终,对五种化合物的抗TMV效果进行了测定,值得注意的是,化合物36表现出潜在的抗TMV活性。最重要的是,我们采用了多方面的方法来全面了解NtSPS1基因敲除HD中萜类化合物的含量和抗TMV特性。这揭示了NtSPS1基因敲除烟草的治疗潜力,有助于发现未描述的抗TMV活性抑制剂,以及从突变体中寻找新的抗TMV候选物。