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Antagonistic and Detoxification Potentials of Trichoderma Isolates for Control of Zearalenone (ZEN) Producing Fusarium graminearum

机译:木霉菌株的拮抗和解毒潜力用于控制生产玉米赤霉病的玉米赤霉烯酮(ZEN)

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摘要

Fungi belonging to Fusarium genus can infect crops in the field and cause subsequent mycotoxin contamination, which leads to yield and quality losses of agricultural commodities. The mycotoxin zearalenone (ZEN) produced by several Fusarium species (such as F. graminearum and F. culmorum) is a commonly-detected contaminant in foodstuffs, posing a tremendous risk to food safety. Thus, different strategies have been studied to manage toxigenic pathogens and mycotoxin contamination. In recent years, biological control of toxigenic fungi is emerging as an environment-friendly strategy, while Trichoderma is a fungal genus with great antagonistic potentials for controlling mycotoxin producing pathogens. The primary objective of this study was to explore the potentials of selected Trichoderma isolates on ZEN-producing F. graminearum, and the second aim was to investigate the metabolic activity of different Trichoderma isolates on ZEN. Three tested Trichoderma isolates were proved to be potential candidates for control of ZEN producers. In addition, we reported the capacity of Trichoderma to convert ZEN into its reduced and sulfated forms for the first time, and provided evidences that the tested Trichoderma could not detoxify ZEN via glycosylation. This provides more insight in the interaction between ZEN-producing fungi and Trichoderma isolates.
机译:属于镰刀菌属的真菌可感染田间作物并引起随后的霉菌毒素污染,这导致农产品的产量和质量下降。几种镰刀菌(例如禾谷镰刀菌和鳞茎镰刀菌)产生的霉菌毒素玉米赤霉烯酮(ZEN)是食品中常见的污染物,对食品安全构成巨大风险。因此,已经研究了不同的策略来控制产毒病原体和霉菌毒素污染。近年来,对产毒真菌的生物控制正在作为一种环境友好策略出现,而木霉属真菌是一种真菌类,对控制产生真菌毒素的病原体具有巨大的拮抗潜力。这项研究的主要目的是探讨选定的木霉菌菌株在生产ZEN的禾谷镰孢中的潜力,第二个目的是研究不同木霉菌菌株在ZEN上的代谢活性。事实证明,三种测试过的木霉菌菌株是控制ZEN生产者的潜在候选者。此外,我们首次报道了木霉将ZEN转化为其还原和硫酸化形式的能力,并提供了证据表明所测试的木霉无法通过糖基化解毒ZEN。这为产生ZEN的真菌与木霉分离株之间的相互作用提供了更多见解。

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