Wu Yongling, Wang Delong, Gao Yanqing, Feng Juntao, Zhang Xing
Research & Development Center of Biorational Pesticide, Key Laboratory of Plant Protection Resources and Pest Management of Ministry of Education, Northwest A & F University, Xinong Road 22, Yangling 712100, Shaanxi, China.
Molecules. 2016 Jan 22;21(2):130. doi: 10.3390/molecules21020130.
In consideration of the fact that the α-methylene-γ-butyrolactone moiety is a major bio-functional group in the structure of carabrone and possesses some agricultural biological activity, forty-six new ester and six new ether derivatives containing α-methylene-γ-butyrolactone moieties were synthesized, and their fungicidal activities against Colletotrichum lagenarium and Botrytis cinerea were investigated. Most of the synthesized compounds showed moderate to significant fungicidal activity. Among them, halogen atom-containing derivatives showed better activity than others, especially compounds 6a,d which exhibited excellent fungicidal activity against C. lagenarium, with IC50 values of 7.68 and 8.17 μM. The structure-activity relationship (SAR) analysis indicated that ester derivatives with electron-withdrawing groups on the benzene ring showed better fungicidal activity than those with electron-donating groups. A quantitative structure-activity relationship (QSAR) model (R² = 0.9824, F = 203.01, S² = 0.0083) was obtained through the heuristic method. The built model revealed a strong correlation of fungicidal activity against C. lagenarium with the molecular structures of these compounds. These results are expected to prove helpful in the design and exploration of low toxicity and high efficiency α-methylene-γ-butyrolactone-based fungicides.
鉴于α-亚甲基-γ-丁内酯部分是卡拉酮结构中的主要生物功能基团并具有一定的农业生物活性,合成了46种含α-亚甲基-γ-丁内酯部分的新酯衍生物和6种新醚衍生物,并研究了它们对葫芦科炭疽菌和灰葡萄孢的杀菌活性。大多数合成化合物表现出中等至显著的杀菌活性。其中,含卤原子的衍生物表现出比其他衍生物更好的活性,尤其是化合物6a、d对葫芦科炭疽菌表现出优异的杀菌活性,IC50值分别为7.68和8.17 μM。构效关系(SAR)分析表明,苯环上带有吸电子基团的酯衍生物比带有供电子基团的酯衍生物表现出更好的杀菌活性。通过启发式方法获得了定量构效关系(QSAR)模型(R² = 0.9824,F = 203.01,S² = 0.0083)。所建立的模型揭示了对葫芦科炭疽菌的杀菌活性与这些化合物的分子结构之间有很强的相关性。这些结果有望为低毒高效的基于α-亚甲基-γ-丁内酯的杀菌剂的设计和开发提供帮助。