Research and Development Center of Biorational Pesticide, Northwest A & F University, Yangling 712100, China.
Engineering and Research Center of Biological Pesticide of Shaanxi Province, Yangling 712100, China.
Molecules. 2017 Nov 30;22(12):2053. doi: 10.3390/molecules22122053.
In order to develop a novel biofungicide, the antifungal activity and action mode of cuminic acid from the seed of L. against f. sp. (FON) on watermelon was determined systematically. In this study, the median effective concentration (EC) value for cuminic acid in inhibiting mycelial growth of FON was 22.53 μg/mL. After treatment with cuminic acid, the mycelial morphology was seriously influenced; cell membrane permeability and glycerol content were increased markedly, but pigment and mycotoxin (mainly fusaric acid) were significantly decreased. Synthesis genes of bikaverin (, and ) and fusaric acid (, , and ) both were downregulated compared with the control, as confirmed by quantitative RT-PCR. In greenhouse experiments, cuminic acid at all concentrations displayed significant bioactivities against FON. Importantly, significant enhancement of activities of SOD, POD, CAT and decrease of MDA content were observed after in vivo cuminic acid treatment on watermelon leaves. These indicated that cuminic acid not only showed high antifungal activity, but also could enhance the self-defense system of the host plant. Above all, cuminic acid showed the potential as a biofungicide to control FON.
为了开发一种新型的生物杀菌剂,系统测定了从 L.种子中提取的对西瓜(FON)的抑菌活性和作用模式。在本研究中,香豆酸抑制 FON 菌丝生长的半数有效浓度(EC)值为 22.53 μg/mL。香豆酸处理后,菌丝形态受到严重影响;细胞膜通透性和甘油含量显著增加,但色素和真菌毒素(主要是 Fusaric acid)显著减少。与对照相比,通过定量 RT-PCR 证实了 bikaverin(、和)和 fusaric acid(、、和)的合成基因均下调。在温室实验中,所有浓度的香豆酸对 FON 均表现出显著的生物活性。重要的是,在体内用香豆酸处理西瓜叶片后,观察到 SOD、POD、CAT 的活性显著增强,MDA 含量降低。这些表明香豆酸不仅表现出高抑菌活性,而且还可以增强宿主植物的自身防御系统。总之,香豆酸具有作为防治 FON 的生物杀菌剂的潜力。