Ma, M.; Lv, W.; Huang, Y.; Zhang, J.; Li, S.; Bai, N.; Zhang, H.; Zhu, X.; Xu, C.; Zhang, H.
Nitrogen Fertilizer Reduction in Rice–Eel Co-Culture System Improves the Soil Microbial Diversity and Its Functional Stability. Plants 2025, 14, 2425.
https://doi.org/10.3390/plants14152425
AMA Style
Ma M, Lv W, Huang Y, Zhang J, Li S, Bai N, Zhang H, Zhu X, Xu C, Zhang H.
Nitrogen Fertilizer Reduction in Rice–Eel Co-Culture System Improves the Soil Microbial Diversity and Its Functional Stability. Plants. 2025; 14(15):2425.
https://doi.org/10.3390/plants14152425
Chicago/Turabian Style
Ma, Mengqian, Weiguang Lv, Yu Huang, Juanqin Zhang, Shuangxi Li, Naling Bai, Haiyun Zhang, Xianpu Zhu, Chenglong Xu, and Hanlin Zhang.
2025. "Nitrogen Fertilizer Reduction in Rice–Eel Co-Culture System Improves the Soil Microbial Diversity and Its Functional Stability" Plants 14, no. 15: 2425.
https://doi.org/10.3390/plants14152425
APA Style
Ma, M., Lv, W., Huang, Y., Zhang, J., Li, S., Bai, N., Zhang, H., Zhu, X., Xu, C., & Zhang, H.
(2025). Nitrogen Fertilizer Reduction in Rice–Eel Co-Culture System Improves the Soil Microbial Diversity and Its Functional Stability. Plants, 14(15), 2425.
https://doi.org/10.3390/plants14152425