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首页> 外文期刊>Pesticide Biochemistry and Physiology >Growth, hydrolases and ultrastructure of Fusarium oxysporum as affected by phenolic rich extracts from several xerophytic plants
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Growth, hydrolases and ultrastructure of Fusarium oxysporum as affected by phenolic rich extracts from several xerophytic plants

机译:由几种杂种植物的酚醛富萃取物影响的镰刀虫氧化孢子的生长,水解酶和超微结构

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摘要

Fusarium oxysporum, the causal agent of rot and wilt diseases, is one of the most detrimental phytopathogens for the productivity of many economic crops. The present study was conducted to evaluate the potentiality of some xerophytic plants as eco-friendly approach for management of F. oxysporum. Phenolic rich extracts from five plants namely: Horwoodia dicksoniae, Citrullus colocynthis, Gypsophila capillaris, Pulicaria incisa and Rhanterium epapposum were examined in vitro. The different extracts showed high variability in their phenolic and flavonoid contents as well as total antioxidant capacity. A strong positive correlation existed between the antifungal activity of the tested extracts and their contents of both total phenolics and flavonoids (r values are 0.91 and 0.82, respectively). Extract of P. incisa was the most effective in reducing the mycelial growth (IC50 = 0.92 mg/ml) and inhibiting the activities of CMCase, pectinase, amylase and protease by 36, 42, 58 and 55%, respectively. The high performance liquid chromatography analysis of P. incisa extract revealed the presence of eight phenolic acids along with five polyphenolic compounds. The flavonol, quercetin and its glycosides rutin and quercetrin were the most abundant followed by the phenolic acids, t-cinnamic, caffeic, ferulic and vanillic. P. incisa extract not only affects the growth and hydrolases of F. oxysporum but also induces ultrastructure changes in the mycelium, as revealed by transmission electron microscopy. To our knowledge, this is the first study to investigate the mechanisms underlying the antifungal activity of P. incisa. (C) 2016 Elsevier Inc. All rights reserved.
机译:腐败和枯萎病的因果剂镰刀菌,是许多经济作物生产率最有害的植物病变之一。进行本研究以评估一些杂草植物作为生态友好型植物的潜在方法的潜力。酚醛丰富的五种植物中的提取物即:在体外检查Horwoodia Dicksoniae,康氏菌,柑橘类Colocynthis,Gycisophila Capillaris,Pulicaria Incisa和Rhanterium Epaposum。不同的提取物在其酚类和黄酮内容物以及总抗氧化容量中显示出高的可变性。在测试提取物的抗真菌活性和它们的总酚类和黄酮类化合物的内容物(分别为0.91和0.82)之间存在强烈的正相关性。 P. Incisa的提取物最有效地减少菌丝体生长(IC50 = 0.92mg / ml)并抑制CMCase,果胶酶,淀粉酶和蛋白酶的活性,分别为36,42,58和55%。 P. Incisa提取物的高效液相色谱分析显示出八种酚酸的存在以及五种多酚化合物。黄酮醇,槲皮素及其糖苷芦丁和槲皮素是最丰富的,其次是酚酸,T-肉桂,咖啡酸,阿魏纤维和香草。 P. Incisa提取物不仅影响F. Oxysporum的生长和水解酶,而且诱导菌丝体中的超微结构变化,如通过透射电子显微镜透视所揭示的。据我们所知,这是研究P. Incisa抗真菌活性的机制的第一研究。 (c)2016年Elsevier Inc.保留所有权利。

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