Li, L.; Zhang, H.; Zhan, L.; Guan, W.; Hu, J.; Wei, Z.; Wu, W.; Wu, Y.; Xing, Q.; Wu, J.;
et al. Synergistic Regulation of Bile Acid-Driven Nitrogen Metabolism by Swollenin in Ruminants: A Microbiota-Targeted Strategy to Improve Nitrogen Use Efficiency. Animals 2026, 16, 149.
https://doi.org/10.3390/ani16010149
AMA Style
Li L, Zhang H, Zhan L, Guan W, Hu J, Wei Z, Wu W, Wu Y, Xing Q, Wu J,
et al. Synergistic Regulation of Bile Acid-Driven Nitrogen Metabolism by Swollenin in Ruminants: A Microbiota-Targeted Strategy to Improve Nitrogen Use Efficiency. Animals. 2026; 16(1):149.
https://doi.org/10.3390/ani16010149
Chicago/Turabian Style
Li, Lizhi, Haibo Zhang, Linfei Zhan, Weikun Guan, Junhao Hu, Zi Wei, Wenbo Wu, Yunjing Wu, Qingfeng Xing, Jianzhong Wu,
and et al. 2026. "Synergistic Regulation of Bile Acid-Driven Nitrogen Metabolism by Swollenin in Ruminants: A Microbiota-Targeted Strategy to Improve Nitrogen Use Efficiency" Animals 16, no. 1: 149.
https://doi.org/10.3390/ani16010149
APA Style
Li, L., Zhang, H., Zhan, L., Guan, W., Hu, J., Wei, Z., Wu, W., Wu, Y., Xing, Q., Wu, J., Li, Z., Liu, Q., Chen, J., Yuan, A., Guo, D., Ouyang, K., Yang, J., Hu, W., & Zhao, X.
(2026). Synergistic Regulation of Bile Acid-Driven Nitrogen Metabolism by Swollenin in Ruminants: A Microbiota-Targeted Strategy to Improve Nitrogen Use Efficiency. Animals, 16(1), 149.
https://doi.org/10.3390/ani16010149