Liao, H.; Li, C.; Han, Z.; Luo, G.; Yang, Y.; Wu, Q.; An, A.; Li, X.; Li, D.
Soil Fungal Function Centralization Enhances the Decomposition of Fine Roots at Canopy Gap Borders. Forests 2024, 15, 1293.
https://doi.org/10.3390/f15081293
AMA Style
Liao H, Li C, Han Z, Luo G, Yang Y, Wu Q, An A, Li X, Li D.
Soil Fungal Function Centralization Enhances the Decomposition of Fine Roots at Canopy Gap Borders. Forests. 2024; 15(8):1293.
https://doi.org/10.3390/f15081293
Chicago/Turabian Style
Liao, Haijun, Chaonan Li, Zhoulin Han, Guorong Luo, Yulian Yang, Qinggui Wu, Aluo An, Xianwei Li, and Dehui Li.
2024. "Soil Fungal Function Centralization Enhances the Decomposition of Fine Roots at Canopy Gap Borders" Forests 15, no. 8: 1293.
https://doi.org/10.3390/f15081293
APA Style
Liao, H., Li, C., Han, Z., Luo, G., Yang, Y., Wu, Q., An, A., Li, X., & Li, D.
(2024). Soil Fungal Function Centralization Enhances the Decomposition of Fine Roots at Canopy Gap Borders. Forests, 15(8), 1293.
https://doi.org/10.3390/f15081293