Liu, J.; Wang, J.; Chen, M.; Meng, W.; Ding, A.; Chen, M.; Ding, R.; Tan, M.; Xiang, Z.
Multi-Omics Analyses Uncover the Mechanism Underlying Polyploidization-Enhanced Steviol Glycosides Biosynthesis in Stevia rebaudiana. Plants 2024, 13, 2542.
https://doi.org/10.3390/plants13182542
AMA Style
Liu J, Wang J, Chen M, Meng W, Ding A, Chen M, Ding R, Tan M, Xiang Z.
Multi-Omics Analyses Uncover the Mechanism Underlying Polyploidization-Enhanced Steviol Glycosides Biosynthesis in Stevia rebaudiana. Plants. 2024; 13(18):2542.
https://doi.org/10.3390/plants13182542
Chicago/Turabian Style
Liu, Juan, Jiaxue Wang, Mingjia Chen, Wenna Meng, Anping Ding, Miao Chen, Rongping Ding, Mingpu Tan, and Zengxu Xiang.
2024. "Multi-Omics Analyses Uncover the Mechanism Underlying Polyploidization-Enhanced Steviol Glycosides Biosynthesis in Stevia rebaudiana" Plants 13, no. 18: 2542.
https://doi.org/10.3390/plants13182542
APA Style
Liu, J., Wang, J., Chen, M., Meng, W., Ding, A., Chen, M., Ding, R., Tan, M., & Xiang, Z.
(2024). Multi-Omics Analyses Uncover the Mechanism Underlying Polyploidization-Enhanced Steviol Glycosides Biosynthesis in Stevia rebaudiana. Plants, 13(18), 2542.
https://doi.org/10.3390/plants13182542