永柏木和卢西塔尼柏木植物发酵剂对核桃炭疽菌的抗真菌和抗氧化活性:体外和体内评价

Q4 Social Sciences
Márcia Regina Pansera, Wendel Paulo Silvestre, Luciana Bavaresco Andrade Touguuinha, Valdirene Camatti Sartori
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引用次数: 0

摘要

目的:通过DPPH•和ABTS•+自由基抑制评价,验证两种植物性发酵剂对果炭黑病菌菌丝生长和萌发的体内外抗真菌活性,以及发酵植物性发酵剂化合物的抗氧化活性。理论框架:植物是几种生物活性和多功能物质的有前途的来源。农用化学品有时会造成有害的环境影响,为了尽量减少其影响,人们正在越来越多地研究替代社会技术,例如所谓的植物发酵产品,以控制农业感兴趣的植物病原真菌疾病。方法:采用分光光度法和高效液相色谱法测定其抗氧化活性及酚类化合物、黄酮类化合物和单个酚类化合物的含量。在含有0、10% v/v、20% v/v和40% v/v发酵剂的PDA培养基中,对果霉菌丝生长和分生孢子萌发进行了研究。用接种了该植物病原体的黄麻叶片进行了体内试验。结果与结论:在PDA培养基中采用稀释法,当浓度为40 vol.%时,永无止水酵母的菌落发育控制为100%。在分生孢子萌发过程中,它们对这种重要的植物病原真菌表现出较强的抗真菌活性。从发酵的无酵菌中鉴定出浓度最高的活性化合物为没食子酸和柚皮苷。抗氧化活性在68% - 82%的范围内变化,根据评估的自由基。研究意义:本研究结果表明,在黄花蒿的培养中,利用发酵菌控制果霉病具有广阔的应用前景。独创性价值:评估植物发酵剂在植物真菌病害控制中的潜在用途是一种新颖的方法,对有机农业实践非常重要和有趣,减少了对化学合成分子控制真菌植物病原体的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antifungal and Antioxidant Activity of Cupressus Sempervirens and Cupressus Lusitanica Botanical Fermentates on Colletotrichum Fructicola: In Vitro and In Vivo Evaluation
Purpose: The objective of this work was to verify the in vitro and in vivo antifungal activity of Cupressus sempervirens L. and Cupressus lusitanica Mill botanical fermentates on mycelial growth and germination of Colletotrichum fructicola conidia, as well as the antioxidant activity present in the compounds of the fermented botanicals using the DPPH• and ABTS•+ radical inhibition evaluation. Theoretical framework: Plants are a promising source of several bioactive and multifunctional substances. To minimize the impacts of agrochemicals, which sometimes cause harmful environmental effects, alternative social technologies are being investigated more and more, such as the so-called botanical fermented products to control phytopathogenic fungal diseases of agricultural interest. Methods: The antioxidant activity and contents of phenolic compounds, flavonoids, and individual phenolics were determined by spectrophotometry and high-performance liquid chromatography. The mycelial growth and conidia germination of C. fructicola were evaluated in a PDA medium containing the fermentates at zero, 10 % v/v, 20 % v/v, and 40 % v/v. In vivo tests were also conducted using Acca sellowiana leaves inoculated with the phytopathogen. Results and conclusion: The results showed that C. sempervirens fermentate controlled by 100 % the development of the fungal colony in the concentration of 40 vol.% by the dilution method in PDA medium. In the conidia germination, they showed strong antifungal activities against this important phytopathogenic fungus. The active compound identified in the highest concentration from the fermented C. sempervirens was gallic acid and naringin for the fermentate of C. lusitanica. Antioxidant activity varied in the range of 68 – 82 % sweeping depending on the evaluated radical. Research implications: The results of this work show a promising potential for C. sempervirens fermentate to control C. fructicola in the culture of A. sellowiana. Originality value: Assessing the potential use of botanical fermentates to help control fungal diseases in plants is a novel approach and is very important and interesting for organic farming practices, reducing the need for chemical synthetic molecules to control fungal phytopathogens.
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来源期刊
Revista de Gestao Social e Ambiental
Revista de Gestao Social e Ambiental Social Sciences-Geography, Planning and Development
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