Increased artemisinin production by promoting glandular secretory trichome formation and reconstructing the artemisinin biosynthetic pathway in Artemisia annua

Yongpeng Li , Wei Qin , Hang Liu , Tiantian Chen , Xin Yan , Weizhi He , Bowen Peng , Jin Shao , Xueqing Fu , Ling Li , Xiaolong Hao , Guoyin Kai , Kexuan Tang

Horticulture Research ›› 2023, Vol. 10 ›› Issue (5) : 055

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Horticulture Research ›› 2023, Vol. 10 ›› Issue (5) :055 DOI: 10.1093/hr/uhad055
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Increased artemisinin production by promoting glandular secretory trichome formation and reconstructing the artemisinin biosynthetic pathway in Artemisia annua
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Yongpeng Li, Wei Qin, Hang Liu, Tiantian Chen, Xin Yan, Weizhi He, Bowen Peng, Jin Shao, Xueqing Fu, Ling Li, Xiaolong Hao, Guoyin Kai, Kexuan Tang. Increased artemisinin production by promoting glandular secretory trichome formation and reconstructing the artemisinin biosynthetic pathway in Artemisia annua. Horticulture Research, 2023, 10 (5) : 055 DOI:10.1093/hr/uhad055

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Acknowledgements

This work was supported by National Key R&D Program of China (2018YFA0900600), the Bill & Melinda Gates Foundation (OPP1199872 and INV-027291), the China Postdoctoral Science Foundation (2022M722851), the National Natural Science Foundation of China (82274047, 31770327, 32070329, 82003889), SJTU Trans-med Awards Research (20190104), SJTU Global Strategic Partnership Fund (2020 SJTU-CORNELL), Zhejiang Provincial Natural Science Foundation of China (LQ21H280004), National Young Qihuang Scholars Training Program, and the National ‘Ten-thousand Talents Program’ for Leading Talents of Science and Technology Innovation in China.

Author contributions

Y.L. and K.T. designed the research. Y.L., W.Q., H.L., T.C., X.Y., W.H., B.P., and J.S. performed most of the experiments. Y.L. drafted the manuscript. Y.L., W.Q., X.F., L.L., X.H., G.K., and K.T. revised the manuscript. All authors have approved the manuscript.

Data availability

All data supporting this study are available in the article.

Conflict of interest

The authors declare no conflicts of interest.

References

[1]

Peplow M . Synthetic biology’s first malaria drug meets market resistance. Nature. 2016; 530: 389-90.

[2]

Farhi M, Marhevka E, Ben-Ari J et al. Generation of the potent anti-malarial drug artemisinin in tobacco. Nat Biotechnol. 2011; 29: 1072-4.

[3]

Ikram N, Kashkooli A, Peramuna A et al. Stable production of the antimalarial drug artemisinin in the moss Physcomitrella patens. Front Bioeng Biotechnol. 2017; 5: 47.

[4]

Paddon C, Westfall P, Pitera D et al. High-level semi-synthetic production of the potent antimalarial artemisinin. Nature. 2013; 496: 528-32.

[5]

Hassani D, Fu X, Shen Q et al. Parallel transcriptional regulation of artemisinin and flavonoid biosynthesis. Trends Plant Sci. 2020; 25: 466-76.

[6]

Czechowski T, Larson TR, Catania TM et al. Artemisia annua mutant impaired in artemisinin synthesis demonstrates importance of nonenzymatic conversion in terpenoid metabolism . Proc Natl Acad Sci USA. 2016; 113: 15150-5.

[7]

Xie L, Yan T, Li L et al. The WRKY transcription factor AaGSW2 promotes glandular trichome initiation in Artemisia annua. J Exp Bot. 2021; 72: 1691-701.

[8]

Chen R, Bu Y, Ren J et al. Discovery and modulation of diterpenoid metabolism improves glandular trichome formation, artemisinin production and stress resilience in Artemisia annua. New Phytol. 2021; 230: 2387-403.

[9]

Li Y, Chen T, Liu H et al. The truncated AaActin1 promoter is a candidate tool for metabolic engineering of artemisinin biosynthesis in Artemisia annua L. J Plant Physiol. 2022; 274: 153712.

[10]

Lee A, Kwon M, Kang M et al. Increased sesqui- and triterpene production by co-expression of HMG-CoA reductase and biotin carboxyl carrier protein in tobacco (Nicotiana benthamiana). Metab Eng. 2019; 52: 20-8.

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