London Research and Development Centre , Agriculture and Agri-Food Canada , 1391 Sandford Street , London , Ontario N5V 4T3 , Canada.
J Agric Food Chem. 2018 Dec 19;66(50):13199-13208. doi: 10.1021/acs.jafc.8b04523. Epub 2018 Dec 4.
The veA gene is a key regulator governing morphogenetic development and secondary metabolism in many fungi. Here, we characterized and disrupted a veA orthologue in an ochratoxigenic Aspergillus niger strain. Morphological development, ochratoxin A (OTA) biosynthesis, and oxidative stress tolerance in the wild-type and veA disruption strains were further analyzed. Accordingly, the link between the veA gene and development of specific gene brlA, OTA biosynthesis key gene pks, and oxidative-stress-tolerance-related gene cat was explored. Results demonstrated that the veA gene acts as a positive regulator of conidia production, OTA biosynthesis, and oxidative stress tolerance in A. niger, regardless of light conditions. Darkness promoted conidial production and OTA biosynthesis in the A. niger wild-type strain. Our results contribute to a better understanding of the veA regulatory mechanism and suggest the veA gene as a potential target for developing control strategies for A. niger infection and OTA biosynthesis.
veA 基因是调控许多真菌形态发生发育和次生代谢的关键调控因子。在这里,我们对产赭曲霉毒素的黑曲霉中 veA 直系同源物进行了特征描述和敲除。进一步分析了野生型和 veA 敲除菌株的形态发育、赭曲霉毒素 A(OTA)生物合成和氧化应激耐受性。因此,探索了 veA 基因与特定基因 brlA、OTA 生物合成关键基因 pks 和氧化应激耐受性相关基因 cat 的发育之间的联系。结果表明,veA 基因在黑曲霉中无论光照条件如何,都作为分生孢子产生、OTA 生物合成和氧化应激耐受性的正调控因子发挥作用。黑暗促进了黑曲霉野生型菌株的分生孢子产生和 OTA 生物合成。我们的研究结果有助于更好地理解 veA 调控机制,并提示 veA 基因可能成为控制黑曲霉感染和 OTA 生物合成的潜在靶标。