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VeA Is Associated with the Response to Oxidative Stress in the Aflatoxin Producer Aspergillus flavus

机译:VeA与黄曲霉毒素黄曲霉生产者对氧化应激的反应有关

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Survival of fungal species depends on the ability of these organisms to respond to environmental stresses. Osmotic stress or high levels of reactive oxygen species (ROS) can cause stress in fungi resulting in growth inhibition. Both eukaryotic and prokaryotic cells have developed numerous mechanisms to counteract and survive the stress in the presence of ROS. In many fungi, the HOG signaling pathway is crucial for the oxidative stress response as well as for osmotic stress response. This study revealed that while the osmotic stress response is only slightly affected by the master regulator veA, this gene, also known to control morphological development and secondary metabolism in numerous fungal species, has a profound effect on the oxidative stress response in the aflatoxin-producing fungus Aspergillus flavus. We found that the expression of A. flavus homolog genes involved in the HOG signaling pathway is regulated by veA. Deletion of veA resulted in a reduction in transcription levels of oxidative stress response genes after exposure to hydrogen peroxide. Furthermore, analyses of the effect of VeA on the promoters of cat1 and trxB indicate that the presence of VeA alters DNA-protein complex formation. This is particularly notable in the cat1 promoter, where the absence of VeA results in abnormally stronger complex formation with reduced cat1 expression and more sensitivity to ROS in a veA deletion mutant, suggesting that VeA might prevent binding of negative transcription regulators to the cat1 promoter. Our study also revealed that veA positively influences the expression of the transcription factor gene atfB and that normal formation of DNA-protein complexes in the cat1 promoter is dependent on AtfB.
机译:真菌物种的生存取决于这些生物对环境压力做出反应的能力。渗透胁迫或高水平的活性氧(ROS)会引起真菌的胁迫,从而抑制生长。真核细胞和原核细胞都已经开发出许多机制来抵抗和在ROS存在下承受压力。在许多真菌中,HOG信号通路对于氧化应激反应和渗透应激反应都至关重要。这项研究表明,虽然渗透应激反应仅受主调节剂 veA 的轻微影响,但该基因也已知控制许多真菌物种的形态发育和次级代谢,对氧化反应具有深远的影响产黄曲霉毒素的真菌黄曲霉中的应激反应。我们发现参与HOG信号通路的黄曲霉同源基因的表达受 veA 调控。缺失 veA 导致过氧化氢暴露后氧化应激反应基因的转录水平降低。此外,对VeA对 cat1 trxB 启动子的影响的分析表明,VeA的存在会改变DNA-蛋白质复合物的形成。这在 cat1 启动子中尤其明显,其中缺少VeA会导致异常强大的复合物形成,而 cat1 的表达减少,并且对 veA < / em>缺失突变体,表明VeA可能阻止负转录调节因子与 cat1 启动子结合。我们的研究还揭示了 veA 对转录因子基因 atfB 的表达具有积极影响,并且在 cat1 启动子中正常形成DNA-蛋白质复合物。取决于AtfB。

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