向日葵植物毒性化合物的分离与鉴定。

G Avantaggiato, M Solfrizzo, L Tosi, A Zazzerini, F P Fanizzi, A Visconti
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引用次数: 22

摘要

报道了向日葵光蕨(Phomopsis helianthi mont - cvet等)两种植物毒性代谢物的分离、化学性质和生物活性。通过紫外、红外、1H、13C NMR和质谱等波谱方法鉴定为反式-4,6-二羟基茴香素(反式-3-甲基-4,6,8-三羟基-3,4-二氢异香豆素)和顺式-4,6-二羟基茴香素(顺式-3-甲基-4,6,8-三羟基-3,4-二氢异香豆素)。本文首次报道了从真菌培养物中分离到反式-4,6-二羟基melleins,并报道了helianthi产顺式和反式-4,6-二羟基melleins。研究发现,水稻是生产二羟基melleins的良好底物。一些意大利和法国菌株的培养提取物对向日葵叶片和幼苗表现出不同程度的毒性。反式-和顺式-4,6-二羟基melleins的最小有效剂量分别为76和135 μ g /点(叶片穿刺法),3和5 μ mol g(-1)新鲜组织(切叶吸收)和5和2 μ mol g(-1)新鲜组织(切苗吸收)。这些化合物可能与向日葵病原菌引起的向日葵病害的严重性有关。
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Isolation and characterization of phytotoxic compounds produced by Phomopsis helianthi.

The isolation, chemical characterization and biological activity of two phytotoxic metabolites of Phomopsis helianthi Munt-Cvet et al. is reported. These compounds were identified by spectroscopic methods (UV, IR, 1H and 13C NMR, and MS) as trans-4,6-dihydroxymellein (trans-3-methyl-4,6,8-trihydroxy-3,4-dihyroisocoumarin) and cis-4,6-dihydroxymellein (cis-3-methyl-4,6,8-trihydroxy-3,4-dihydroisocoumarin). This is the first report of the isolation of trans-4,6-dihydroxymellein from fungal cultures and of the production of cis- and trans-4,6-dihydroxymelleins by P. helianthi. Rice was found to be a good substrate for the production of the dihydroxymelleins. Culture extracts of some Italian and French strains of P. helianthi showed different degrees of phytotoxicity towards sunflower leaves and seedlings. The minimum effective doses of trans- and cis-4,6-dihydroxymelleins with different bioassays were 76 and 135 microg per spot (leaf puncture bioassay), 3 and 5 micromol g(-1) fresh tissue (absorption by leaf cutting) and 5 and 2 micromol g(-1) fresh tissue (absorption by cut seedlings), respectively. These compounds may contribute to the severity of the sunflower disease caused by P. helianthi.

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Erratum: Alfonso D, Johnson HA, Colman-Saizarbitoria T, Presley CP, McCabe GP, McLaughlin JL (1996): SARs of annonaceous acetogenins in rat liver mitochondria. Nat Toxins 4:181-188. Advances in detection methods for fungal and algal toxins. HPLC/MS analysis of fusarium mycotoxins, fumonisins and deoxynivalenol. Neuronal binding of tetanus toxin compared to its ganglioside binding fragment (H(c)). A new type sandwich immunoassay for microcystin: production of monoclonal antibodies specific to the immune complex formed by microcystin and an anti-microcystin monoclonal antibody.
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