Bi, Z.; Wang, Y.; Li, P.; Li, C.; Liu, Y.; Sun, C.; Yao, P.; Liu, Y.; Liu, Z.; Bai, J.
Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato. Genes 2022, 13, 2260.
https://doi.org/10.3390/genes13122260
AMA Style
Bi Z, Wang Y, Li P, Li C, Liu Y, Sun C, Yao P, Liu Y, Liu Z, Bai J.
Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato. Genes. 2022; 13(12):2260.
https://doi.org/10.3390/genes13122260
Chicago/Turabian Style
Bi, Zhenzhen, Yihao Wang, Pengcheng Li, Chengju Li, Yindu Liu, Chao Sun, Panfeng Yao, Yuhui Liu, Zhen Liu, and Jiangping Bai.
2022. "Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato" Genes 13, no. 12: 2260.
https://doi.org/10.3390/genes13122260
APA Style
Bi, Z., Wang, Y., Li, P., Li, C., Liu, Y., Sun, C., Yao, P., Liu, Y., Liu, Z., & Bai, J.
(2022). Transcriptomics Analysis Reveals a More Refined Regulation Mechanism of Methylation in a Drought-Tolerant Variety of Potato. Genes, 13(12), 2260.
https://doi.org/10.3390/genes13122260