Xi, J.; Liu, Q.; Zhang, Q.; Liu, Z.; Xue, H.; Feng, Y.
Ozone Treatment Inhibited the Blue Mold Development and Maintained the Main Active Ingredient Content in Radix astragali Infected by Penicillium polonicum Through Activating Reactive Oxygen Species Metabolism. J. Fungi 2025, 11, 402.
https://doi.org/10.3390/jof11060402
AMA Style
Xi J, Liu Q, Zhang Q, Liu Z, Xue H, Feng Y.
Ozone Treatment Inhibited the Blue Mold Development and Maintained the Main Active Ingredient Content in Radix astragali Infected by Penicillium polonicum Through Activating Reactive Oxygen Species Metabolism. Journal of Fungi. 2025; 11(6):402.
https://doi.org/10.3390/jof11060402
Chicago/Turabian Style
Xi, Jihui, Qili Liu, Qingru Zhang, Zhiguang Liu, Huali Xue, and Yuqin Feng.
2025. "Ozone Treatment Inhibited the Blue Mold Development and Maintained the Main Active Ingredient Content in Radix astragali Infected by Penicillium polonicum Through Activating Reactive Oxygen Species Metabolism" Journal of Fungi 11, no. 6: 402.
https://doi.org/10.3390/jof11060402
APA Style
Xi, J., Liu, Q., Zhang, Q., Liu, Z., Xue, H., & Feng, Y.
(2025). Ozone Treatment Inhibited the Blue Mold Development and Maintained the Main Active Ingredient Content in Radix astragali Infected by Penicillium polonicum Through Activating Reactive Oxygen Species Metabolism. Journal of Fungi, 11(6), 402.
https://doi.org/10.3390/jof11060402