Tao, S.; Zhang, Y.; Tian, C.; Duplessis, S.; Zhang, N.
Elevated Ozone Concentration and Nitrogen Addition Increase Poplar Rust Severity by Shifting the Phyllosphere Microbial Community. J. Fungi 2022, 8, 523.
https://doi.org/10.3390/jof8050523
AMA Style
Tao S, Zhang Y, Tian C, Duplessis S, Zhang N.
Elevated Ozone Concentration and Nitrogen Addition Increase Poplar Rust Severity by Shifting the Phyllosphere Microbial Community. Journal of Fungi. 2022; 8(5):523.
https://doi.org/10.3390/jof8050523
Chicago/Turabian Style
Tao, Siqi, Yunxia Zhang, Chengming Tian, Sébastien Duplessis, and Naili Zhang.
2022. "Elevated Ozone Concentration and Nitrogen Addition Increase Poplar Rust Severity by Shifting the Phyllosphere Microbial Community" Journal of Fungi 8, no. 5: 523.
https://doi.org/10.3390/jof8050523
APA Style
Tao, S., Zhang, Y., Tian, C., Duplessis, S., & Zhang, N.
(2022). Elevated Ozone Concentration and Nitrogen Addition Increase Poplar Rust Severity by Shifting the Phyllosphere Microbial Community. Journal of Fungi, 8(5), 523.
https://doi.org/10.3390/jof8050523