Joint International Research Laboratory of Metabolic and Developmental Sciences, Key Laboratory of Urban Agriculture (South) Ministry of Agriculture, Plant Biotechnology Research Center, Fuan-SJTU-Nottingham Plant Biotechnology R&D Center, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, China.
Plant Biology Section, School of Integrative Plant Science, Cornell University, Ithaca, NY, USA.
J Exp Bot. 2021 Feb 27;72(5):1691-1701. doi: 10.1093/jxb/eraa523.
Glandular secreting trichomes (GSTs) synthesize and secrete large quantities of secondary metabolites, some of which have well-established commercial value. An example is the anti-malarial compound artemisinin, which is synthesized in the GSTs of Artemisia annua. Accordingly, there is considerable interest in understanding the processes that regulate GST density as a strategy to increase artemisinin production. In this study, we identified a GST-specific WRKY transcription factor from A. annua, AaGSW2, which is positively regulated by the direct binding of the homeodomain proteins AaHD1 and AaHD8 to the L1-box of the AaGSW2 promoter. Overexpression of AaGSW2 in A. annua significantly increased GST density, while AaGSW2 knockdown lines showed impaired GST initiation. Ectopic expression of AaGSW2 homologs from two mint cultivars, Mentha spicata and Mentha haplocalyx, in A. annua also induced GST formation. These results reveal a molecular mechanism involving homeodomain and WRKY proteins that controls glandular trichome initiation, at least part of which is shared by A. annua and mint.
腺毛分泌型 Trichomes (GSTs) 合成并分泌大量的次生代谢产物,其中一些具有良好的商业价值。一个例子是抗疟化合物青蒿素,它是在青蒿 GSTs 中合成的。因此,人们非常有兴趣了解调节 GST 密度的过程,将其作为提高青蒿素产量的一种策略。在这项研究中,我们从青蒿中鉴定出一个 GST 特异性 WRKY 转录因子 AaGSW2,它被同源域蛋白 AaHD1 和 AaHD8 直接结合到 AaGSW2 启动子的 L1 框上正向调节。在青蒿中过表达 AaGSW2 显著增加了 GST 密度,而 AaGSW2 敲低系表现出 GST 起始受损。在青蒿中异位表达来自两种薄荷品种(薄荷和薄荷 haplocalyx)的 AaGSW2 同源物也诱导了 GST 的形成。这些结果揭示了一种涉及同源域和 WRKY 蛋白的分子机制,该机制控制着腺毛的起始,至少其中一部分是青蒿和薄荷共有的。