Kong, Z.; Zhou, C.; Chen, L.; Ren, A.; Zhang, D.; Basang, Z.; Tan, Z.; Kang, J.; Li, B.
Multi-Omics Analysis Reveals Up-Regulation of APR Signaling, LXR/RXR and FXR/RXR Activation Pathways in Holstein Dairy Cows Exposed to High-Altitude Hypoxia. Animals 2019, 9, 406.
https://doi.org/10.3390/ani9070406
AMA Style
Kong Z, Zhou C, Chen L, Ren A, Zhang D, Basang Z, Tan Z, Kang J, Li B.
Multi-Omics Analysis Reveals Up-Regulation of APR Signaling, LXR/RXR and FXR/RXR Activation Pathways in Holstein Dairy Cows Exposed to High-Altitude Hypoxia. Animals. 2019; 9(7):406.
https://doi.org/10.3390/ani9070406
Chicago/Turabian Style
Kong, Zhiwei, Chuanshe Zhou, Liang Chen, Ao Ren, Dongjie Zhang, Zhuzha Basang, Zhiliang Tan, Jinhe Kang, and Bin Li.
2019. "Multi-Omics Analysis Reveals Up-Regulation of APR Signaling, LXR/RXR and FXR/RXR Activation Pathways in Holstein Dairy Cows Exposed to High-Altitude Hypoxia" Animals 9, no. 7: 406.
https://doi.org/10.3390/ani9070406
APA Style
Kong, Z., Zhou, C., Chen, L., Ren, A., Zhang, D., Basang, Z., Tan, Z., Kang, J., & Li, B.
(2019). Multi-Omics Analysis Reveals Up-Regulation of APR Signaling, LXR/RXR and FXR/RXR Activation Pathways in Holstein Dairy Cows Exposed to High-Altitude Hypoxia. Animals, 9(7), 406.
https://doi.org/10.3390/ani9070406