State Key Laboratory of Functions and Applications of Medicinal Plants & College of pharmacy, Guizhou Provincial Engineering Technology Research Center for Chemical Drug R&D, Guizhou Medical University, Guiyang 550014, China; School of Medicine and Health Management, Guizhou Medical University, Guiyang 550025, China.
State Key Laboratory of Functions and Applications of Medicinal Plants & College of pharmacy, Guizhou Provincial Engineering Technology Research Center for Chemical Drug R&D, Guizhou Medical University, Guiyang 550014, China.
Pestic Biochem Physiol. 2022 Jun;184:105108. doi: 10.1016/j.pestbp.2022.105108. Epub 2022 Apr 22.
Three prieurianin-type limonoids (1-3), including two new compounds (1 and 2) and one known compound (3) were isolated from Munronia henryi. These compounds were tested for their activities against tobacco mosaic virus (TMV) by the conventional half-leaf method and the outcomes were analyzed by western blotting and RT-PCR assays. The three tested compounds, at 100 μg/mL, showed strong antiviral activities in the pretreated tobacco plants with inhibition rates ranging from 70.5% to 81.3%, which were significantly higher than that of the positive control, ningnanmycin (55.6%). Their potential of inducing systemic acquired resistance (SAR) was also evaluated, in which compound 1 showed excellent induction activities. Furthermore, it was found that potentiation of defense-related enzyme activity and the contents of SA was increased. Compound 1 could also inhibit the expression of TMV CP and up-regulate the expression of defense-related genes. This work revealed that these limonoids, especially compound 1 could induce resistance in tobacco plants against the viral pathogen TMV. Meanwhile, compounds 1-3 could down-regulate the expression of NtHsp70-1 and Nthsp70-261 genes, indicating that these limonoids possibly inhibit TMV infection by suppressing NtHsp70-1 and Nthsp70-261 expression. This study is the first to report antiviral compounds with two different mechanisms of action.
从木莲中分离得到三种 prieurianin 型柠檬苦素(1-3),包括两种新化合物(1 和 2)和一种已知化合物(3)。采用常规半叶法测定这些化合物对烟草花叶病毒(TMV)的活性,并用 Western blot 和 RT-PCR 分析进行结果分析。三种测试化合物在 100μg/mL 时对预处理烟草植物表现出强烈的抗病毒活性,抑制率在 70.5%至 81.3%之间,明显高于阳性对照宁南霉素(55.6%)。还评估了它们诱导系统获得抗性(SAR)的潜力,其中化合物 1 表现出优异的诱导活性。此外,发现防御相关酶活性和 SA 含量增加。化合物 1 还可以抑制 TMV CP 的表达并上调防御相关基因的表达。这项工作表明,这些柠檬苦素,尤其是化合物 1,可以诱导烟草植物对病毒病原体 TMV 产生抗性。同时,化合物 1-3 可以下调 NtHsp70-1 和 Nthsp70-261 基因的表达,表明这些柠檬苦素可能通过抑制 NtHsp70-1 和 Nthsp70-261 的表达来抑制 TMV 感染。本研究首次报道了具有两种不同作用机制的抗病毒化合物。