Ren, P.-F.; Wang, F.-Z.; Deji, Z.-M.; Liao, H.-R.; Cai, M.-M.; He, K.-Y.; Li, L.; Wei, X.-X.; Ma, Q.
PcNPF2.7 from the Xerophyte Pugionium cornutum Facilitates Root-to-Shoot NO3− Transport and Affects Na+ Transport Under Salt Stress. Biology 2025, 14, 1590.
https://doi.org/10.3390/biology14111590
AMA Style
Ren P-F, Wang F-Z, Deji Z-M, Liao H-R, Cai M-M, He K-Y, Li L, Wei X-X, Ma Q.
PcNPF2.7 from the Xerophyte Pugionium cornutum Facilitates Root-to-Shoot NO3− Transport and Affects Na+ Transport Under Salt Stress. Biology. 2025; 14(11):1590.
https://doi.org/10.3390/biology14111590
Chicago/Turabian Style
Ren, Peng-Fei, Fang-Zhen Wang, Zhuo-Ma Deji, Hao-Ran Liao, Mei-Mei Cai, Ke-Yan He, Li Li, Xiao-Xing Wei, and Qing Ma.
2025. "PcNPF2.7 from the Xerophyte Pugionium cornutum Facilitates Root-to-Shoot NO3− Transport and Affects Na+ Transport Under Salt Stress" Biology 14, no. 11: 1590.
https://doi.org/10.3390/biology14111590
APA Style
Ren, P.-F., Wang, F.-Z., Deji, Z.-M., Liao, H.-R., Cai, M.-M., He, K.-Y., Li, L., Wei, X.-X., & Ma, Q.
(2025). PcNPF2.7 from the Xerophyte Pugionium cornutum Facilitates Root-to-Shoot NO3− Transport and Affects Na+ Transport Under Salt Stress. Biology, 14(11), 1590.
https://doi.org/10.3390/biology14111590