Zhang, F.; Wang, N.; Zhao, C.; Yang, L.; Zhao, X.; Gao, H.; Zhang, F.; Wang, H.; Huang, N.
Enhancing Black Soil Fertility and Microbial Community Structure via Microbial Agents to Reduce Chemical Fertilizer Dependency: A Strategy to Boost Maize Yield. Agronomy 2025, 15, 1029.
https://doi.org/10.3390/agronomy15051029
AMA Style
Zhang F, Wang N, Zhao C, Yang L, Zhao X, Gao H, Zhang F, Wang H, Huang N.
Enhancing Black Soil Fertility and Microbial Community Structure via Microbial Agents to Reduce Chemical Fertilizer Dependency: A Strategy to Boost Maize Yield. Agronomy. 2025; 15(5):1029.
https://doi.org/10.3390/agronomy15051029
Chicago/Turabian Style
Zhang, Fenglin, Nan Wang, Chenyu Zhao, Luze Yang, Xingmin Zhao, Hongjun Gao, Fugui Zhang, Hongbin Wang, and Ning Huang.
2025. "Enhancing Black Soil Fertility and Microbial Community Structure via Microbial Agents to Reduce Chemical Fertilizer Dependency: A Strategy to Boost Maize Yield" Agronomy 15, no. 5: 1029.
https://doi.org/10.3390/agronomy15051029
APA Style
Zhang, F., Wang, N., Zhao, C., Yang, L., Zhao, X., Gao, H., Zhang, F., Wang, H., & Huang, N.
(2025). Enhancing Black Soil Fertility and Microbial Community Structure via Microbial Agents to Reduce Chemical Fertilizer Dependency: A Strategy to Boost Maize Yield. Agronomy, 15(5), 1029.
https://doi.org/10.3390/agronomy15051029