Simple method for transformation and gene editing in medicinal plants

Xuesong Cao , Hongtao Xie , Minglei Song , Lianghui Zhao , Hailiang Liu , Guofu Li , Jian-Kang Zhu

Journal of Integrative Plant Biology ›› 2024, Vol. 66 ›› Issue (1) : 17 -19.

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Journal of Integrative Plant Biology ›› 2024, Vol. 66 ›› Issue (1) : 17 -19. DOI: 10.1111/jipb.13593
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Simple method for transformation and gene editing in medicinal plants

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Xuesong Cao, Hongtao Xie, Minglei Song, Lianghui Zhao, Hailiang Liu, Guofu Li, Jian-Kang Zhu. Simple method for transformation and gene editing in medicinal plants. Journal of Integrative Plant Biology, 2024, 66(1): 17-19 DOI:10.1111/jipb.13593

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References

[1]

Cao,X., Xie,H., Song,M., Lu, J., Ma,P., Huang,B., Wang,M., Tian,Y., Chen, F., Peng,J., et al. (2023). Cut-dip-budding delivery system enables genetic modifications in plants without tissue culture. Innovation 4: 100345.

[2]

Chen,Z., Yang,Y., Han,Y., and Wang, X. (2022). Neuroprotective effects and mechanisms of senegenin, an effective compound originated from the roots of polygala tenuifolia. Front. Pharmacol. 13: 937333.

[3]

He,Y., Zhang,T., Sun,H., Zhan, H., and Zhao,Y. (2020). A reporter for noninvasively monitoring gene expression and plant transformation. Hortic. Res. 7: 152.

[4]

Li,W.L., Zheng,H.C., Bukuru,J., and De Kimpe, N. (2004). Natural medicines used in the traditional Chinese medical system for therapy of diabetes mellitus. J. Ethnopharmacol. 92: 1-21.

[5]

Mao,Y., Botella, J.R., Liu,Y., and Zhu,J.K. (2019). Gene editing in plants: Progress and challenges. Nat. Sci. Rev. 6: 421-437.

[6]

Sun,W., Xu,Z., Song,C., and Chen, S. (2022). Herbgenomics: Decipher molecular genetics of medicinal plants. Innovation 3: 100322.

[7]

Zhang,Y., Hu,Y.F., Li,W., Xu, G.Y., Wang,K.R., Li,L., Luo,H., Zou,L., and Wu, J.S. (2022). Updates and advances on pharmacological properties of Taraxacum mongolicum Hand.-Mazz and its potential applications. Food Chem. 373: 131380.

[8]

Zhou,Z., Li,Q., Xiao,L., Wang, Y., Feng,J., Bu,Q., Xiao,Y., Hao,K., Guo, M., Chen,W., et al. (2021). Multiplexed CRISPR/Cas9-mediated knockout of laccase genes in salvia miltiorrhiza revealed their roles in growth, development, and metabolism. Front. Plant Sci. 12: 647768.

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2023 Institute of Botany, Chinese Academy of Sciences.

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