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Quinolizidine Alkaloids and Isoflavones from the Herb of Thermopsis lupinoides and Their Antiviral, Antifungal, and Insecticidal Activities

奎尼嗪 灰葡萄孢菌 生物 生物测定 EC50型 蚜虫 杀菌剂 化学 植物 生物碱 蚜虫 生物化学 体外 遗传学
作者
Tong Zhang,Cai-Yan Tian,Ji Zhang,Qiao An,Ping Yi,Chun‐Mao Yuan,Zhongkai Zhang,Lihua Zhao,Xiao‐Jiang Hao,Zhan‐Xing Hu
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:72 (9): 5047-5061 被引量:4
标识
DOI:10.1021/acs.jafc.3c09529
摘要

As part of our ongoing investigation of natural bioactive substances from the genus Thermopsis of the tribe Fabaceae for agricultural protection, the chemical constituents of the herb Thermopsis lupinoides were systematically investigated, which led to the isolation of 39 quinolizidine alkaloids (QAs) (1–39), including 14 new QAs (1–14) and 14 isoflavones (40–53). Their structures were elucidated through comprehensive spectroscopic data analysis (IR, UV, NMR, HRESIMS), ECD calculations, and X-ray crystallography. The antitomato spotted wilt virus (TSWV) and antifungal (against Botrytis cinerea, Gibberella zeae, Phytophythora capsica, and Alternaria alternata) and insecticidal (against Aphis fabae and Tetranychus urticae) activities of the isolated compounds were screened using the lesion counting method, mycelial inhibition assay, and spray method, respectively. The bioassay results showed that 34 exhibited excellent protective activity against TSWV, with an EC50 value of 36.04 μg/mL, which was better than that of the positive control, ningnanmycin (86.03 μg/mL). The preliminary mechanistic exploration illustrated that 34 induced systemic acquired resistance in the host plant by acting on the salicylic acid signaling pathway. Moreover, 1 showed significant antifungal activity against B. cinerea (EC50 value of 20.83 μg/mL), while 2 exhibited good insecticidal activity against A. fabae (LC50 value of 24.97 μg/mL). This research is promising for the invention of novel pesticides from QAs with high efficiency and satisfactory ecological compatibility.
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