Xing, A.; Peng, C.; Tang, Y.; Cao, R.; Ma, S.; Xu, X.; Wu, Z.; Sun, Y.; Wang, C.; Liu, S.;
et al. NH4+-N Promotes Fluoride Transport and NO3−-N Increases Fluoride Fixation in Roots of Camellia sinensis. Horticulturae 2026, 12, 94.
https://doi.org/10.3390/horticulturae12010094
AMA Style
Xing A, Peng C, Tang Y, Cao R, Ma S, Xu X, Wu Z, Sun Y, Wang C, Liu S,
et al. NH4+-N Promotes Fluoride Transport and NO3−-N Increases Fluoride Fixation in Roots of Camellia sinensis. Horticulturae. 2026; 12(1):94.
https://doi.org/10.3390/horticulturae12010094
Chicago/Turabian Style
Xing, Anqi, Chunju Peng, Yan Tang, Renyong Cao, Shifu Ma, Xuefeng Xu, Zichen Wu, Yi Sun, Chunyan Wang, Shujing Liu,
and et al. 2026. "NH4+-N Promotes Fluoride Transport and NO3−-N Increases Fluoride Fixation in Roots of Camellia sinensis" Horticulturae 12, no. 1: 94.
https://doi.org/10.3390/horticulturae12010094
APA Style
Xing, A., Peng, C., Tang, Y., Cao, R., Ma, S., Xu, X., Wu, Z., Sun, Y., Wang, C., Liu, S., Zhuang, J., Chen, X., Li, X., & Wang, Y.
(2026). NH4+-N Promotes Fluoride Transport and NO3−-N Increases Fluoride Fixation in Roots of Camellia sinensis. Horticulturae, 12(1), 94.
https://doi.org/10.3390/horticulturae12010094