Wang, J.; Wang, K.; Li, L.; Sun, Q.; Li, D.; Hao, D.; Chen, J.; Zong, J.; Liu, J.; Guo, H.;
et al. Combined Transcriptome and Proteome Analysis Reveals the Molecular Mechanism by Which ZmPDI Improves Salt Resistance in Rice (Oryza sativa). Agriculture 2024, 14, 615.
https://doi.org/10.3390/agriculture14040615
AMA Style
Wang J, Wang K, Li L, Sun Q, Li D, Hao D, Chen J, Zong J, Liu J, Guo H,
et al. Combined Transcriptome and Proteome Analysis Reveals the Molecular Mechanism by Which ZmPDI Improves Salt Resistance in Rice (Oryza sativa). Agriculture. 2024; 14(4):615.
https://doi.org/10.3390/agriculture14040615
Chicago/Turabian Style
Wang, Jingjing, Kai Wang, Ling Li, Qixue Sun, Dandan Li, Dongli Hao, Jingbo Chen, Junqin Zong, Jianxiu Liu, Hailin Guo,
and et al. 2024. "Combined Transcriptome and Proteome Analysis Reveals the Molecular Mechanism by Which ZmPDI Improves Salt Resistance in Rice (Oryza sativa)" Agriculture 14, no. 4: 615.
https://doi.org/10.3390/agriculture14040615
APA Style
Wang, J., Wang, K., Li, L., Sun, Q., Li, D., Hao, D., Chen, J., Zong, J., Liu, J., Guo, H., & Chen, R.
(2024). Combined Transcriptome and Proteome Analysis Reveals the Molecular Mechanism by Which ZmPDI Improves Salt Resistance in Rice (Oryza sativa). Agriculture, 14(4), 615.
https://doi.org/10.3390/agriculture14040615