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1. Xie L#, Yan T#, Li L#, Chen M, Hassani D, Li Y, Qin W, Liu H, Chen T, Fu X, Shen Q, Rose JKC, Tang K*. An HD-ZIP-MYB complex regulates glandular secretory trichome initiation in Artemisia annua. New Phytol. 2021 May 27. doi: 10.1111/nph.17514.
2. 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 SL, Rose JKC, Tang K*. The WRKY transcription factor AaGSW2 promotes glandular trichome initiation in Artemisia annua. J Exp Bot. 2021 Feb 27;72(5):1691-1701.
3. Li, L., Hao, X., Liu, H., Wang, W., Fu, X., Ma, Y., Shen, Q., Chen, M., and Tang, K.X*. (2019). Jasmonic acid-responsive AabHLH1 positively regulates artemisinin biosynthesis in Artemisia annua. Biotechnology and applied biochemistry 66, 369-375.
4. Hao, X., Zhong, Y., Ni Tzmann, H.W., Fu, X., Yan, T., Shen, Q., Chen, M., Ma, Y., Zhao, J., Osbourn, A., Li, L*., and Tang, K.X*. (2019). Light-Induced Artemisinin Biosynthesis Is Regulated by the bZIP Transcription Factor AaHY5 in Artemisia annua. Plant & cell physiology 60, 1747-1760.
5. Ma, Y.N., Xu, D.B., Li, L., Zhang, F., Fu, X.Q., Shen, Q., Lyu, X.Y., Wu, Z.K., Pan, Q.F., Shi, P., Hao, X.L., Yan, T.X., Chen, M.H., Liu, P., He, Q., Xie, L.H., Zhong, Y.J., Tang, Y.L., Zhao, J.Y., Zhang, L.D., Sun, X.F., and Tang, K.X*. (2018). Jasmonate promotes artemisinin biosynthesis by activating the TCP14-ORA complex in Artemisia annua. Sci Adv 4, eaas9357.
6. 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.X*. (2018). The Genome of Artemisia annua Provides Insight into the Evolution of Asteraceae Family and Artemisinin Biosynthesis. Mol Plant 11, 776-788.
7. 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.X*. (2018). A novel HD-ZIP IV/MIXTA complex promotes glandular trichome initiation and cuticle development in Artemisia annua. The New phytologist 218, 567-578.
8. 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.X*. (2018). The roles of AaMIXTA1 in regulating the initiation of glandular trichomes and cuticle biosynthesis in Artemisia annua. The New phytologist 217, 261-276.
9. Wang, S., Li, L., Xu, P., Lian, H., Wang, W., Xu, F., Mao, Z., Zhang, T., and Yang, H.Q *. (2018). CRY1 interacts directly with HBI1 to regulate its transcriptional activity and photomorphogenesis in Arabidopsis. J Exp Bot 69, 3867-3881.
10. Wang, W., Lu, X., Li, L., Lian, H., Mao, Z., Xu, P., Guo, T., Xu, F., Du, S., Cao, X., Wang, S., Shen, H., and Yang, H.Q*. (2018). Photoexcited CRYPTOCHROME1 Interacts with Dephosphorylated BES1 to Regulate Brassinosteroid Signaling and Photomorphogenesis in Arabidopsis. Plant Cell 30, 1989-2005.
11. Yan, T., Chen, M., Shen, Q., Li, L., Fu, X., Pan, Q., Tang, Y., Shi, P., Lv, Z., Jiang, W., Ma, Y.N., Hao, X., Sun, X., and Tang, K.X*. (2017). HOMEODOMAIN PROTEIN 1 is required for jasmonate-mediated glandular trichome initiation in Artemisia annua. The New phytologist 213, 1145-1155.
12. Hao, X., Zhong, Y., Fu, X., Lv, Z., Shen, Q., Yan, T., Shi, P., Ma, Y., Chen, M., Lv, X., Wu, Z., Zhao, J., Sun, X., Li, L*., and Tang, K.X*. (2017). Transcriptome Analysis of Genes Associated with the Artemisinin Biosynthesis by Jasmonic Acid Treatment under the Light in Artemisia annua. Front Plant Sci 8, 971.
13. Zhang, F#., Liu, S#., Li, L#., Zuo, K., Zhao, L., and Zhang, L*. (2016). Genome-Wide Inference of Protein-Protein Interaction Networks Identifies Crosstalk in Abscisic Acid Signaling. Plant Physiol 171, 1511-1522.
14. Lian, H.L., He, S.B., Zhang, Y.C., Zhu, D.M., Zhang, J.Y., Jia, K.P., Sun, S.X., Li, L., and Yang, H.Q*. (2011). Blue-light-dependent interaction of cryptochrome 1 with SPA1 defines a dynamic signaling mechanism. Genes & development 25, 1023-1028.
15. Li, L., Shi, Z.Y., Li, L., Shen, G.Z., Wang, X.Q., An, L.S., and Zhang, J.L*. (2010). Overexpression of ACL1 (abaxially curled leaf 1) increased Bulliform cells and induced Abaxial curling of leaf blades in rice. Mol Plant 3, 807-817.