Liu, Y.; Liu, J.; Tian, Y.; Ye, S.; Pang, D.; Chen, L.; Qu, H.
Multi-Omics Analysis Revealed the Accumulation of Flavonoids and Shift of Fungal Community Structure Caused by Tea Grafting (Camellia sinensis L.). Plants 2025, 14, 1176.
https://doi.org/10.3390/plants14081176
AMA Style
Liu Y, Liu J, Tian Y, Ye S, Pang D, Chen L, Qu H.
Multi-Omics Analysis Revealed the Accumulation of Flavonoids and Shift of Fungal Community Structure Caused by Tea Grafting (Camellia sinensis L.). Plants. 2025; 14(8):1176.
https://doi.org/10.3390/plants14081176
Chicago/Turabian Style
Liu, Yue, Jun Liu, Yiping Tian, Shuang Ye, Dandan Pang, Linbo Chen, and Hao Qu.
2025. "Multi-Omics Analysis Revealed the Accumulation of Flavonoids and Shift of Fungal Community Structure Caused by Tea Grafting (Camellia sinensis L.)" Plants 14, no. 8: 1176.
https://doi.org/10.3390/plants14081176
APA Style
Liu, Y., Liu, J., Tian, Y., Ye, S., Pang, D., Chen, L., & Qu, H.
(2025). Multi-Omics Analysis Revealed the Accumulation of Flavonoids and Shift of Fungal Community Structure Caused by Tea Grafting (Camellia sinensis L.). Plants, 14(8), 1176.
https://doi.org/10.3390/plants14081176