Zhou, L.; Ma, Z.; Chen, X.; Liu, Q.; Huang, Y.; Yang, C.; Zeng, D.; Zheng, Z.; Zhang, B.; Zhang, Y.;
et al. Carbonic Anhydrase 2 and Na+/K+-ATPase Mediate Family-Dependent Nitrite Tolerance via Modulating Branchial Ion Transport and Acid–Base Balance in Penaeus vannamei. Animals 2026, 16, 1638.
https://doi.org/10.3390/ani16111638
AMA Style
Zhou L, Ma Z, Chen X, Liu Q, Huang Y, Yang C, Zeng D, Zheng Z, Zhang B, Zhang Y,
et al. Carbonic Anhydrase 2 and Na+/K+-ATPase Mediate Family-Dependent Nitrite Tolerance via Modulating Branchial Ion Transport and Acid–Base Balance in Penaeus vannamei. Animals. 2026; 16(11):1638.
https://doi.org/10.3390/ani16111638
Chicago/Turabian Style
Zhou, Liping, Zhentao Ma, Xiuli Chen, Qingyun Liu, Yuliu Huang, Chunling Yang, Digang Zeng, Zhihong Zheng, Bin Zhang, Yueling Zhang,
and et al. 2026. "Carbonic Anhydrase 2 and Na+/K+-ATPase Mediate Family-Dependent Nitrite Tolerance via Modulating Branchial Ion Transport and Acid–Base Balance in Penaeus vannamei" Animals 16, no. 11: 1638.
https://doi.org/10.3390/ani16111638
APA Style
Zhou, L., Ma, Z., Chen, X., Liu, Q., Huang, Y., Yang, C., Zeng, D., Zheng, Z., Zhang, B., Zhang, Y., Zhao, Y., & Zhao, X.
(2026). Carbonic Anhydrase 2 and Na+/K+-ATPase Mediate Family-Dependent Nitrite Tolerance via Modulating Branchial Ion Transport and Acid–Base Balance in Penaeus vannamei. Animals, 16(11), 1638.
https://doi.org/10.3390/ani16111638