Wang, H.; Zhang, K.; Liu, M.; Cheng, S.; Cordeiro, C.M.; Sindhøj, E.; Liang, J.; Zeng, Y.; Shen, S.; Zhi, S.
Optimized Organic Fertilization Mitigates Antibiotic Resistance Gene Dissemination in Manure-Amended Soils: A Field Study on Nutrient–Microbiome–Antibiotic Resistance Gene Nexus During Cabbage Reproductive Cycle. Antibiotics 2026, 15, 821.
https://doi.org/10.3390/antibiotics15090821
AMA Style
Wang H, Zhang K, Liu M, Cheng S, Cordeiro CM, Sindhøj E, Liang J, Zeng Y, Shen S, Zhi S.
Optimized Organic Fertilization Mitigates Antibiotic Resistance Gene Dissemination in Manure-Amended Soils: A Field Study on Nutrient–Microbiome–Antibiotic Resistance Gene Nexus During Cabbage Reproductive Cycle. Antibiotics. 2026; 15(9):821.
https://doi.org/10.3390/antibiotics15090821
Chicago/Turabian Style
Wang, Han, Keqiang Zhang, Muheng Liu, Shenwei Cheng, Cheryl Marie Cordeiro, Erik Sindhøj, Junfeng Liang, Yuanfang Zeng, Shizhou Shen, and Suli Zhi.
2026. "Optimized Organic Fertilization Mitigates Antibiotic Resistance Gene Dissemination in Manure-Amended Soils: A Field Study on Nutrient–Microbiome–Antibiotic Resistance Gene Nexus During Cabbage Reproductive Cycle" Antibiotics 15, no. 9: 821.
https://doi.org/10.3390/antibiotics15090821
APA Style
Wang, H., Zhang, K., Liu, M., Cheng, S., Cordeiro, C. M., Sindhøj, E., Liang, J., Zeng, Y., Shen, S., & Zhi, S.
(2026). Optimized Organic Fertilization Mitigates Antibiotic Resistance Gene Dissemination in Manure-Amended Soils: A Field Study on Nutrient–Microbiome–Antibiotic Resistance Gene Nexus During Cabbage Reproductive Cycle. Antibiotics, 15(9), 821.
https://doi.org/10.3390/antibiotics15090821