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Synergistic Inhibition of Mycotoxigenic Fungi and Mycotoxin Production by Combination of Pomegranate Peel Extract and Azole Fungicide

机译:石榴皮提取物与腈类杀真菌剂联合协同抑制产毒真菌和产真菌毒素

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摘要

Fungal plant pathogens cause considerable losses in yield and quality of field crops worldwide. In addition, under specific environmental conditions, many fungi, including such as some Fusarium and Aspergillus spp., are further able to produce mycotoxins while colonizing their host, which accumulate in human and animal tissues, posing a serious threat to consumer health. Extensive use of azole fungicides in crop protection stimulated the emergence of acquired azole resistance in some plant and human fungal pathogens. Combination treatments, which become popular in clinical practice, offer an alternative strategy for managing potentially resistant toxigenic fungi and reducing the required dosage of specific drugs. In the current study we tested the effect of pomegranate peel extract (PPE) on the growth and toxin production of the mycotoxigenic fungi Aspergillus flavus and Fusarium proliferatum, both alone and in combination with the azole fungicide prochloraz (PRZ). Using time-lapse microscopy and quantitative image analysis we demonstrate significant delay of conidial germination and hyphal elongation rate in both fungi following PPE treatment in combination with PRZ. Moreover, PPE treatment reduced aflatoxin production by A. flavus up to 97%, while a combined treatment with sub-inhibitory doses of PPE and PRZ resulted in complete inhibition of toxin production over a 72 h treatment. These findings were supported by qRT-PCR analysis, showing down-regulation of key genes involved in the aflatoxin biosynthetic pathway under combined PPE/PRZ treatment al low concentrations. Our results provide first evidence for synergistic effects between the commercial drug PRZ and natural compound PPE. Future application of these findings may allow to reduce the required dosage of PRZ, and possibly additional azole drugs, to inhibit mycotoxigenic fungi, ultimately reducing potential concerns over exposure to high doses of these potentially harmful fungicides.
机译:真菌植物病原体在世界范围内造成大田作物的产量和质量的重大损失。另外,在特定的环境条件下,许多真菌,例如某些镰孢属和曲霉属,在其定殖于其宿主的过程中还能够产生霉菌毒素,其在人和动物组织中积累,对消费者健康构成严重威胁。在某些植物和人类真菌病原体中广泛使用吡咯类杀真菌剂来保护作物,从而促进了获得性吡咯抗性的出现。在临床实践中流行的联合治疗为控制潜在的抗毒原性真菌和减少特定药物的所需剂量提供了另一种策略。在当前的研究中,我们测试了石榴皮提取物(PPE)对霉菌黄曲霉和枯萎镰孢菌的生长和毒素产生的影响,这些作用既可以单独使用,也可以与唑类杀真菌剂百草枯(PRZ)结合使用。使用延时显微镜和定量图像分析,我们证明了PPE与PRZ结合处理后,两种真菌的分生孢子萌发和菌丝伸长率均显着延迟。此外,PPE处理将黄曲霉的黄曲霉毒素产量降低了97%,而亚抑制剂量的PPE和PRZ的联合治疗则在72小时内完全抑制了毒素的产生。这些发现得到qRT-PCR分析的支持,显示在低浓度PPE / PRZ联合处理下,黄曲霉毒素生物合成途径中涉及的关键基因下调。我们的结果为商业药物PRZ和天然化合物PPE之间的协同效应提供了第一个证据。这些发现的未来应用可能会减少PRZ的剂量,并可能减少吡唑类药物的使用,以抑制致毒真菌,最终减少高剂量这些潜在有害杀菌剂暴露的潜在隐患。

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