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1. Ma, Y., Xu, D., Yan, X., Wu, Z., Kayani, S., Shen, Q., Fu, X., Xie, L., Hao, X., Hassani, D., Li, L., Liu, H., Pan, Q., Lv, Z., Liu, P., Sun, X. and Tang, K. (2021). Jasmonate- and abscisic acid-activated AaGSW1-AaTCP15/ AaORA transcriptional cascade promotes artemisinin biosynthesis in Artemisia annua. Plant Biotechnology Journal 19:1412-1428.
2. Fu, X., Peng, B., Hassani, D., XIe, L., Liu, H., Li, Y., Chen, T., Liu, P., Tang, Y., Li, L., Zhao, J., Sun, X. and Tang, K. (2021). AaWRKY9 contributes to light- and jasmonate-mediated to regulate the biosynthesis of artemisinin in Artemisia annua. New Phytologist 231: 1858–1874.
3. Xie, L*., Yan, T.*, Li, L.*, Chen, M., Hassani, D., Li, Y., Qin, W., Liu, H., Chen, T., Fu, X., Shen, Q., Rose, J.K.C. and Tang, K. (2021). An HD-ZIP-MYB complex regulates glandular secretory trichome initiation in Artemisia annua. New Phytologist 231: 2050–2064.
41. Xie, L., Yan, T., Li, L., Chen, M., Ma, Y., Hao, X., Fu, X., Shen, Q., Huang, Y., Qin, W., Liu, H., Chen, T., Hassani, D., Kayani, S.I., Rose, J.K.C. and Tang, K. (2021). The WRKY transcription factor AaGSW2 promotes glandular trichome initiation in Artemisia annua. Journal of Experimental Botany 72(5): 1691-1701.
5. Chen, T., Li, Y., Xie, L., Hao, X., Liu, H., Qin, W., Wang, C., Yan, X., Wu-Zhang, K., Yao, X., Peng, B., Zhang, Y., Fu, X., Li, L. and Tang, K. (2021). AaWRKY17, a positive regulator of artemisinin biosynthesis, is involved in resistance to Pseudomonas syringae in Artemisia annua. Horticulture Research 8, 217 (2021). https://doi.org/10.1038/s41438-021-00652-6.
6. Kayani, S., Shen, Q., Rahman, S., Fu, X., Li, Y., Wang, C., Hassani, D., and Tang, K. (2021). Transcriptional Regulation of Flavonoid Biosynthesis in Artemisia annua by AaYABBY5. Horticulture Research 8:257. https://doi.org/10.1038/s41438-021-00693-x.
7. Danial, H., Fu, X., Shen, Q., Khalid, M., Rose, J.K.C. and Tang, K. (2020). Parallel Transcriptional Regulation of Artemisinin and Flavonoid Biosynthesis. Trends in Plant Science 25(5): 466-476.
8. Shen, Q.*, Zhang, L.*, Liao, Z.*, Wang, S., Yan, T., Shi, P., Liu, M., Fu, X., Pan, Q., Wang, Y., Lv, Z., Lu, X., Zhang, F., Jiang, W., Ma, Y., Chen, M., Hao, X., Li, L., Tang, Y., Lv, G., Zhou, Y., Sun, X., Brodelius, P.E., Rose, J.K.C and Tang, K. (2018). The genome of Artemisia annua provides insight into the evolution of Asteraceae family and artemisinin biosynthesis. Molecular Plant 11: 776-788
9. Ma, Y., Xu, D., Li, L., Zhang, F., Fu, X., Shen, Q., Lyu, X., Wu, Z., Pan, Q., Shi, P., Hao, X., Yan, T., Chen, M., Liu, P., He, Q., Xie, L., Zhang, Y., Tang, Y., Zhao, J., Zhang, L., Sun, X. and Tang, K. (2018). Jasmonate promotes artemisinin biosynthesis by activating the TCP14-ORA complex in Artemisia annua. Science Advances 4, eaas9357.
10. Shi, P., Fu, X., Shen, Q., Liu, M., Pan, Q., Tang, Y., Jiang, W., Lv, Z., Yan, T., Ma, Y., Chen, M., Hao, X., Liu, P., Li, L., Sun, X. and Tang, K. (2018). The role of AaMIXTA1 in regulating the initiation of glandular trichomes and cuticle biosynthesis in Artemisia annua. New Phytologist 217:261-276.
11. Yan, T.*, Li, L.*, Xie, L., Chen, M., Shen, Q., Pan, Q., Fu, X., Shi, P., Tang, Y., Huang, H., Huang, Y., Huang, Y. and Tang, K. (2018). A novel HD-ZIP IV/MIXTA complex promotes glandular trichome initiation and cuticle development in Artemisia annua. New Phytologist 218: 567–578.
12. Yan, T., Chen, M., Shen, Q., Li, L., Fu, X., Pan, Q., Tang, Y., Shi, P., Lv, Z., Jiang, W., Ma, Y., Hao, X., Sun, X. and Tang, K. (2017). HOMEODOMAIN PROTEIN 1 is required for jasmonate-mediated glandular trichome initiation in Artemisia annua. New Phytologist 213(3): 1145-1155.
13. Chen, M., Yan, T., Shen, Q., Lu, X., Pan, Q., Huang, Y., Tang, Y., Fu, X., Liu, M., Jiang, W., Lv, Z., Shi, P., Ma, Y., Hao, X., Zhang, L., Li, L. and Tang, K. (2017). GLANDULAR TRICHOME-SPECIFIC WRKY 1 promotes artemisinin biosynthesis in Artemisia annua. New Phytologist 214(1): 304-316.
14. Shen, Q.*, Lu, X.*, Yan, T., Fu, X., Lv, Z., Zhang, F., Pan, Q., Wang, G., Sun, X. and Tang, K. (2016). The jasmonate-responsive AaMYC2 transcription factor positively regulates artemisinin biosynthesis in Artemisia annua. New Phytologist 210: 1269-1281.
15. Shen, Q., Yan, T., Fu, X. and Tang, K. (2016). Transcriptional regulation of artemisinin biosynthesis in Artemisia annua L. Science Bulletin 61(1): 18-25.
16. Zhang, F., Fu, X., Lv, Z., Lu, X., Shen, Q., Zhang, L., Zhu, M., Wang, G., Sun, X., Liao, Z. and Tang K. (2015). A basic leucine zipper transcription factor, AabZIP1, connects abscisic acid signaling with artemisinin biosynthesis in Artemisia annua. Molecular Plant 8: 163-175.