Division of Agricultural Chemicals, Indian Agricultural Research Institute, New Delhi, India.
J Environ Sci Health B. 2013;48(6):516-22. doi: 10.1080/03601234.2013.761921.
Bioactive constituents of Eupatorium adenophorum were investigated for antifungal activity. A structure-antifungal activity relationship of cadinene sesquiterpenes was predicted by evaluating individual derivatives. Cadinene derivatives were extracted from leaves of Eupatorium adenophorum using ethyl acetate. Five cadinene sesquiterpenes were isolated by column chromatography and Preparative Thin Layer Chromatography. Bioactivity of these cadinene sesquiterpenes were evaluated in vitro against four phytopathogenic fungi using poison food technique. Purified sesquiterpenes were spectroscopically elucidated as cadinan-3-ene-2,7-dione (1), 7-hydroxycadinan-3-ene-2-one (2), 5,6-dihydroxycadinan-3-ene-2,7-dione (3), cadinan-3,6-diene-2,7-dione (4) and 2-acetyl-cadinan-3,6-diene-7-one (5). Antifungal evaluation of these compounds against pathogenic fungi was found to be selective. Compound 1 was highly inhibitory towards S. rolfsii (ED50 181.60 ± 0.58 μgmL(-1)) and R. solani (ED50 189.74 ± 1.03 μgmL(-1)). Availability of plant material and significant antifungal activity makes the plant a potential source of antifungal agent and that can be exploited for the development of a natural fungicide.
我们研究了紫茎泽兰的生物活性成分,以评估其抗真菌活性。通过评估各个衍生物,预测了紫茎泽兰中倍半萜类化合物的结构-抗真菌活性关系。我们采用乙酸乙酯从紫茎泽兰叶中提取倍半萜类化合物,然后通过柱色谱和制备薄层层析分离出五种倍半萜类化合物。我们采用毒饵法,在体外评估了这些倍半萜类化合物对四种植物病原菌的活性。通过光谱解析,确定这些倍半萜类化合物分别为:卡丹烯-3-烯-2,7-二酮(1)、7-羟基卡丹烯-3-烯-2-酮(2)、5,6-二羟基卡丹烯-3-烯-2,7-二酮(3)、卡丹烯-3,6-二烯-2,7-二酮(4)和 2-乙酰基卡丹烯-3,6-二烯-7-酮(5)。对这些化合物对病原菌的抗真菌评估结果表明,它们具有选择性。化合物 1 对 S. rolfsii(ED50 181.60 ± 0.58 μgmL(-1))和 R. solani(ED50 189.74 ± 1.03 μgmL(-1))的抑制作用较强。由于该植物的材料易得且具有显著的抗真菌活性,因此它可能成为抗真菌剂的潜在来源,可用于开发天然杀菌剂。