Qi, M.; Wu, R.; Song, Z.; Dong, B.; Chen, T.; Wang, M.; Cao, H.; Du, T.; Wang, S.; Li, N.;
et al. Sorbitol Reduces Sensitivity to Alternaria by Promoting Ceramide Kinases (CERK) Expression through Transcription Factor Pswrky25 in Populus (Populus simonii Carr.). Genes 2022, 13, 405.
https://doi.org/10.3390/genes13030405
AMA Style
Qi M, Wu R, Song Z, Dong B, Chen T, Wang M, Cao H, Du T, Wang S, Li N,
et al. Sorbitol Reduces Sensitivity to Alternaria by Promoting Ceramide Kinases (CERK) Expression through Transcription Factor Pswrky25 in Populus (Populus simonii Carr.). Genes. 2022; 13(3):405.
https://doi.org/10.3390/genes13030405
Chicago/Turabian Style
Qi, Meng, Rui Wu, Zhihua Song, Biying Dong, Ting Chen, Mengying Wang, Hongyan Cao, Tingting Du, Shengjie Wang, Na Li,
and et al. 2022. "Sorbitol Reduces Sensitivity to Alternaria by Promoting Ceramide Kinases (CERK) Expression through Transcription Factor Pswrky25 in Populus (Populus simonii Carr.)" Genes 13, no. 3: 405.
https://doi.org/10.3390/genes13030405
APA Style
Qi, M., Wu, R., Song, Z., Dong, B., Chen, T., Wang, M., Cao, H., Du, T., Wang, S., Li, N., Yang, Q., Fu, Y., & Meng, D.
(2022). Sorbitol Reduces Sensitivity to Alternaria by Promoting Ceramide Kinases (CERK) Expression through Transcription Factor Pswrky25 in Populus (Populus simonii Carr.). Genes, 13(3), 405.
https://doi.org/10.3390/genes13030405