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首页> 外文期刊>Mycopathologia >Chemosensitization of Aflatoxigenic Fungi to Antimycin A and Strobilurin Using Salicylaldehyde, a Volatile Natural Compound Targeting Cellular Antioxidation System
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Chemosensitization of Aflatoxigenic Fungi to Antimycin A and Strobilurin Using Salicylaldehyde, a Volatile Natural Compound Targeting Cellular Antioxidation System

机译:使用水杨醛(一种靶向细胞抗氧化系统的挥发性天然化合物)对黄曲霉毒素真菌对抗霉素A和嗜球果伞素的化学增敏作用

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摘要

Various species of fungi in the genus Aspergillus are the most common causative agents of invasive aspergillosis and/or producers of hepato-carcinogenic mycotoxins. Salicylaldehyde (SA), a volatile natural compound, exhibited potent antifungal and anti-mycotoxigenic activities to A. flavus and A. parasiticus. By exposure to the volatilized SA, the growth of A. parasiticus was inhibited up to 10–75% at 9.5 mM ≤ SA ≤ 16.0 mM, while complete growth inhibition was achieved at 19.0 mM ≤ SA. Similar trends were also observed with A. flavus. The aflatoxin production, i.e., aflatoxin B1 and B2 (AFB1, AFB2) for A. flavus and AFB1, AFB2, AFG1, and AFG2 for A. parasiticus, in the SA-treated (9.5 mM) fungi was reduced by ~13–45% compared with the untreated control. Using gene deletion mutants of the model yeast Saccharomyces cerevisiae, we identified the fungal antioxidation system as the molecular target of SA, where sod1Δ [cytosolic superoxide dismutase (SOD)], sod2Δ (mitochondrial SOD), and glr1Δ (glutathione reductase) mutants showed increased sensitivity to this compound. Also sensitive was the gene deletion mutant, vph2Δ, for the vacuolar ATPase assembly protein, suggesting vacuolar detoxification plays an important role for fungal tolerance to SA. In chemosensitization experiments, co-application of SA with either antimycin A or strobilurin (inhibitors of mitochondrial respiration) resulted in complete growth inhibition of Aspergillus at much lower dose treatment of either agent, alone. Therefore, SA can enhance antifungal activity of commercial antifungal agents required to achieve effective control. SA is a potent antifungal and anti-aflatoxigenic volatile that may have some practical application as a fumigant.
机译:曲霉属中的各种真菌是侵袭性曲霉病和/或肝致癌性霉菌毒素产生者的最常见病原体。水杨醛(SA)是一种挥发性的天然化合物,对黄曲霉和寄生曲霉表现出有效的抗真菌和抗霉菌活性。通过暴露于挥发的SA,在9.5 mM≤SA≤16.0 mM时,寄生曲霉的生长被抑制高达10-75%,而在19.0 mM≤SA时达到完全生长抑制。黄曲霉也观察到类似趋势。黄曲霉毒素的生产,即A的黄曲霉毒素B 1 和B 2 (AFB 1 ,AFB 2 )。在SA中,黄褐藻和AFB 1 ,AFB 2 ,AFG 1 和AFG 2 与未处理的对照相比,经处理的(9.5 mM)真菌减少了约13–45%。使用模型酵母酿酒酵母的基因缺失突变体,我们确定了真菌抗氧化系统为SA的分子靶标,其中sod1Δ[胞质超氧化物歧化酶(SOD)],sod2Δ(线粒体SOD)和grl1Δ(谷胱甘肽还原酶)突变体显示增加对这种化合物的敏感性。对液泡ATPase组装蛋白的基因缺失突变体vph2Δ也很敏感,表明液泡解毒对真菌对SA的耐受性起重要作用。在化学增敏实验中,将SA与抗霉素A或strobilurin(线粒体呼吸抑制剂)共同应用会导致曲霉菌的完全生长抑制,而单独使用任一种试剂的剂量要低得多。因此,SA可以增强实现有效控制所需的商业抗真菌剂的抗真菌活性。 SA是一种有效的抗真菌和抗黄曲霉毒素性挥发性物质,可以作为熏蒸剂实际应用。

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