首页> 外文期刊>American journal of agricultural and biological sciences >Anti-Phytopthora capsici Activities and Potential Use as Antifungal in Agriculture of Alpinia galanga Swartz, Curcuma longa Linn, Boesenbergia pandurata Schut and Chromolaena odorata: Bioactivities Guided Isolation of Active Ingredients | Science Publications
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Anti-Phytopthora capsici Activities and Potential Use as Antifungal in Agriculture of Alpinia galanga Swartz, Curcuma longa Linn, Boesenbergia pandurata Schut and Chromolaena odorata: Bioactivities Guided Isolation of Active Ingredients | Science Publications

机译:抗辣椒疫霉菌活性和在农业中的应用作为抗真菌药科学出版物

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> Problem statement: Plant derived fungicides are now being subjects of many research groups. These secondary metabolites have enormous potential to inspire and influence modern agrochemical research. The study aimed to investigate the antifungal activity and their potential use as fungicides in the agriculture of crude extracts and purified compounds derived from plants used in traditional medicines. >Approach: Four medicinal plants including A. galanga, C. longa, B. pandurata and C. odorata were selected and percolated with hexane, ethyl acetate, acetone or methanol. The extracts were purified and elucidated their chemical structures. Disc mycelial growth inhibition was applied in order to determine their anti P. capsici activity and the field study was performed to determine their potential use in controlling fungal infection in chili plants compared with commercial fungicides such as captan and bio-control Trichoderma virens. >Results: All crude extract inhibited mycelial growth of the fungus performed with similar efficacy. ED90 was equal to 300 ppm. Among plants studied B. pandurata was the most potent against P. capsici. The proposed active ingredients were pinostrobin and pinocembrin. In the field study, pinocembrin mediated the same anti P. capsici activity as captan. B. pandurata can protect chili from infection, thus increasing crop yield of chili comparable to Trichoderma virens. >Conclusion: The results clearly showed that the extracts of the four plants studied could be considered as potential sources of novel fungicides. Particularly, B. pandurata has a very high potential as raw material for developing the antifungal molecule of non-petrochemical, naturally eco-friendly, easily obtainable and not toxic to human beings and environment, at least for use in chili growing.
机译: > 问题陈述:植物来源的杀菌剂现在已成为许多研究小组的主题。这些次级代谢产物具有巨大的潜力,可以激发和影响现代农业化学研究。该研究旨在调查抗真菌活性及其在农业中的粗提取物和从传统药物中提取的纯化化合物的农业杀菌剂的潜在用途。 >方法:四种药用植物,包括 A。 galanga,C。longa,B。pandurata 和 C。选择了香茅,并用己烷,乙酸乙酯,丙酮或甲醇过滤。将提取物纯化并阐明其化学结构。应用盘状菌丝体生长抑制以确定其抗iP。 Capsici活性,并进行了实地研究,以确定其与商业杀菌剂(如captan和生物防治 Trichoderma virens )相比,在控制辣椒植物中真菌感染方面的潜在用途。 >结果:所有粗提物均以相同的功效抑制了真菌的菌丝体生长。 ED 90 等于300 ppm。在研究的植物中B。 pandurata 对 P最有效。 capsici 。拟议的活性成分是松果糖苷和松膜蛋白。在田间研究中,松皮球蛋白介导了相同的抗iP。 capsici 作为Captan的活性。 B。 pandurata 可以保护辣椒免受感染,因此可以增加辣椒的产量,与 Trichoderma virens 相当。 >结论:结果清楚地表明,所研究的四种植物的提取物可被认为是新型杀菌剂的潜在来源。特别是B。 Pandurata 作为开发非石油化学,天然生态友好,易于获得且对人类和环境无毒的抗真菌分子的原料具有非常高的潜力,至少用于辣椒种植。

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