Chemical sensitivity phenome of an Armillaria mellea isolate determined using phenotype microarrays and potential use of caffeine-rich wastes for disease control

S. Boudagga, Fatma Arous, Abir Saoudi, Chadlia Hamdi, A. Jaouani
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Abstract

Abstract Armillaria fungi are frequently documented as economically and ecologically significant plant pathogens, recognised as the causal agents of Armillaria root rot disease. Armillaria mellea is one of the most aggressive pathogens in the Armillaria genus. None of the chemicals tested against Armillaria have been effective in fully eradicating an established A. mellea mycelium from an infection site and/or preventing plant mortality, which makes studies about the chemical sensitivity of A. mellea essential. In this work, the inhibitory effects of 120 different chemical agents on the growth rate of A. mellea were examined using the Biolog Phenotype MicroArray system of chemical sensitivity panels. Among the tested substances, aromatic and membrane function compounds showed the highest inhibitory activity against A. mellea. Interestingly, our results demonstrated promising potential for application of caffeine as an A. mellea-oriented fungicide. Further studies were conducted to explore the antifungal activity of a low-cost and locally available caffeine-rich waste, i.e. spent coffee grounds (SCG) against A. mellea. It is noteworthy that the hyphal growth of A. mellea was significantly inhibited when cultivated on malt extract agar supplemented with SCG. Current findings uncovered, for the first time, the potential use of caffeine-rich wastes for designing management strategies to practically control the spread of A. mellea.
利用表型微阵列测定蜜环菌分离物的化学敏感性表型和富咖啡因废物在疾病控制中的潜在用途
摘要蜜环菌是一种经济上和生态上重要的植物病原体,被认为是蜜环菌根腐病的致病因子。蜜环菌是蜜环菌属中最具侵袭性的病原体之一。在对蜜环菌进行的化学试验中,没有一种化学制剂能有效地从感染部位完全根除已建立的蜜环菌菌丝体和/或防止植物死亡,这使得研究蜜环菌的化学敏感性变得至关重要。本研究利用生物表型微阵列(Biolog Phenotype MicroArray)化学敏感板系统,研究了120种不同化学药剂对蜜蜂生长速率的抑制作用。其中,芳香化合物和膜功能化合物对蜜蜂的抑制活性最高。有趣的是,我们的研究结果表明,咖啡因作为一种面向蜜蜂的杀菌剂具有很大的应用潜力。进一步的研究旨在探索低成本和当地可获得的富含咖啡因的废物,即废咖啡渣(SCG)对蜜蜂的抗真菌活性。值得注意的是,在添加了SCG的麦芽提取物琼脂培养基上培养时,棉球菌丝的生长受到了明显的抑制。目前的研究结果首次揭示了富含咖啡因的废物在设计管理策略以实际控制蜜蜂传播方面的潜在用途。
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