| [1] |
Tsusaka T, Sakurai M. 2025. Estimation of the heritability of medicinal compound contents in Glycyrrhiza uralensis. |
| [2] |
Chen Y, Bai Y, Zhang Z, Zhang Y, Jiang Y, et al. 2023. Transcriptomics and metabolomics reveal the primary and secondary metabolism changes in Glycyrrhiza uralensis with different forms of nitrogen utilization. |
| [3] |
Dong X, Ma X, Zhao Z, Ma M. 2024. Exogenous betaine enhances salt tolerance of Glycyrrhiza uralensis through multiple pathways. |
| [4] |
Li Y, Xia C, Luo M, Huang Y, Xia Z, et al. 2025. Comparative genomics of three medicinal Glycyrrhiza species unveiled novel candidates for the production of important bioactive compounds. |
| [5] |
Cao X, Qin Z, Fan P, Wang S, Meng X, et al. 2025. A simple widely applicable hairy root transformation method for gene function studies in medicinal plants. |
| [6] |
Afsharzadeh N, Paltram R, Jungwirth A, Tabrizi L, Nazeri V, et al. 2025. Advancing Glycyrrhiza glabra L. cultivation and hairy root transformation and elicitation for future metabolite overexpression. |
| [7] |
Bansal Y, Mujib A, Mamgain J, Kumar S, Dewir YH, et al. 2024. Synthesis and accumulation of phytocompounds in field-, tissue-culture grown (stress) root tissues and simultaneous defense response activity in Glycyrrhiza glabra L. |
| [8] |
Cong LL, Dan ZC, Zhang LX, Guo YH, Liu H, et al. 2023. Establishment method of a rapid and efficient hairy root transformation system for alfalfa. Chinese Patent No. CN116042698A |
| [9] |
Zeng J, Huang Y, Zhou L, Liang X, Yang C, et al. 2023. Histone deacetylase GiSRT2 negatively regulates flavonoid biosynthesis in Glycyrrhiza inflata. |