Raj Meena Bhanu, Chittora Deepali, Meena Sanjeev, Jain Tripta, Sharma Kanika
Microbial Research Laboratory, Department of Botany, University College of Science, Mohanlal Sukhadia University, Udaipur, India.
Biochem Biophys Rep. 2022 May 9;30:101271. doi: 10.1016/j.bbrep.2022.101271. eCollection 2022 Jul.
Plant extract possess various secondary metabolites which are antifungal in nature and can be used as a safer alternative to the synthetic fungicides. As we all know that the chemical fungicides are harmful not only for humans but also for animals, other vegetation and for complete ecosystem. To overcome this problem, we have to focused on another alternative which are biologically libel and nonhazardous also. In the present study, herbal formulation was prepared in various combination ratios with leaf extracts, cow dung and neem oil cake. The major aim of this short study is to check the stability of the said plant extracts and prepared herbal formulation on various physical factors like heat, temperature, pH, sunlight and storage etc. The extracts and herbal formulations were exposed to varying conditions of the parameters selected for a precise time period, and then observing the effect as a function of change in the crude extract activity, herbal formulation activity and change minimum inhibitory concentration of plant extract against the . Control set of MIC, and extract free medium were maintained for comparison in each set of experiment against . Results suggested that efficacy of leaf extracts and different formulations was not affected by wet heat up to 100 °C while slight reduction in antifungal activity of the plant extract and herbal formulations were observed with dry heat at 100 °C. In addition, slight reduction in activity of extract and herbal formulations was observed with change in pH. However antifungal activity of plant extract as well as herbal formulations, remain unaffected at alkaline pH (pH 9) and neutral pH (pH7). Storage for 6 and 12 months had no negative effect on extract and herbal formulation efficacy and the antifungal activity was observed similar to freshly prepared extract activity. The present study concluded that the plant disease or plant pathogens can be controlled by plant extract and plant based bioformulations by increasing the shelf life with some little changes in the physical parameters such as light, temperature, pH and storage.
植物提取物含有多种具有抗真菌性质的次生代谢产物,可作为合成杀菌剂的更安全替代品。众所周知,化学杀菌剂不仅对人类有害,对动物、其他植被和整个生态系统也有害。为了克服这个问题,我们必须关注另一种生物安全且无害的替代品。在本研究中,用叶提取物、牛粪和印楝油饼以不同的组合比例制备了草药配方。这项简短研究的主要目的是检查上述植物提取物和制备的草药配方在热、温度、pH值、阳光和储存等各种物理因素下的稳定性。将提取物和草药配方在选定的参数的不同条件下暴露一段精确的时间,然后观察其效果,作为粗提取物活性、草药配方活性变化以及植物提取物对……的最低抑菌浓度变化的函数。每组实验都设置了对照的最低抑菌浓度和无提取物培养基,以与……进行比较。结果表明,叶提取物和不同配方的功效在高达100°C的湿热条件下不受影响,而在100°C的干热条件下观察到植物提取物和草药配方的抗真菌活性略有降低。此外,随着pH值的变化,提取物和草药配方的活性略有降低。然而,植物提取物和草药配方的抗真菌活性在碱性pH值(pH 9)和中性pH值(pH 7)下不受影响。储存6个月和12个月对提取物和草药配方的功效没有负面影响,观察到的抗真菌活性与新鲜制备的提取物活性相似。本研究得出结论,通过在光照、温度、pH值和储存等物理参数上进行一些细微的改变来延长保质期,植物提取物和基于植物的生物制剂可以控制植物病害或植物病原体。