Characterization of a trichome-specific promoter of the aldehyde dehydrogenase 1 (ALDH1) gene in Artemisia annua

被引:0
作者
Meng Liu
Pu Shi
Xueqing Fu
Peter E. Brodelius
Qian Shen
Weimin Jiang
Qian He
Kexuan Tang
机构
[1] Shanghai Jiao Tong University,Key Laboratory of Urban Agriculture (South), Ministry of Agriculture, Plant Biotechnology Research Center, School of Agriculture and Biology, Fudan
[2] Linnaeus University,SJTU
来源
Plant Cell, Tissue and Organ Culture (PCTOC) | 2016年 / 126卷
关键词
Aldehyde dehydrogenase 1; Hormonal treatment; Promoter; Transgene;
D O I
暂无
中图分类号
学科分类号
摘要
Artemisinin is a frequently used anti-malaria drug extracted from glandular trichomes (GSTs) in Artemisia annua L. In this study, we report on the characterization of the promoter of aldehyde dehydrogenase 1 (ALDH1) involved in the biosynthesis of artemisinin. A 1620-bp promoter fragment was cloned upstream of the ALDH1 start codon. Putative regulatory cis-acting elements are predicted by software, revealing that this gene is affected by complex factors. The activity of the ALDH1 promoter was analyzed using a reporter gene GUS. GUS expression showed a spatial difference in leaves at different ages. In young leaves, GUS staining was exclusively discovered in GSTs. In older leaves, both GSTs and T-shaped trichomes (TSTs) showed GUS signals. Only TSTs showed GUS staining in lower leaves. No GUS staining was detected in the bottom leaves. The result demonstrates that the ALDH1 promoter is trichome-specific. The RT-Q-PCR analysis revealed that both wild-type and recombinant promoters showed similar activity in A. annua. After application of exogenous 100 μM methyl jasmonate, 100 μM gibberellin and 100 μM salicylic acid separately, the transcript levels were increased significantly, indicating that ALDH1 may play an important role in the response to hormones in A. annua.
引用
收藏
页码:469 / 480
页数:11
相关论文
共 166 条
[1]  
Arsenault PR(2010)Reproductive development modulates gene expression and metabolite levels with possible feedback inhibition of artemisinin in Plant Physiol 154 958-968
[2]  
Vail D(2011)Rubisco small subunit as a strong, green tissue-specific promoter Arch Biol Sci 63 299-307
[3]  
Wobbe KK(2011)Enhancement of artemisinin content and biomass in Plant Growth Regul 63 45-54
[4]  
Erickson K(1999) by exogenous GA3 treatment Phytochem 52 843-854
[5]  
Weathers PJ(2004)Amorpha-4,11-diene synthase catalyses the first probable step in artemisinin biosynthesis Tetrahedron 60 1139-1159
[6]  
Bakhsh A(2007)In vivo transformations of dihydroartemisinic acid in Tetrahedron 63 9548-9566
[7]  
Rao QA(2003) plants Phytochem 64 303-323
[8]  
Shamim Z(2011)In vivo transformations of artemisinic acid in Plant Biol 13 51-58
[9]  
Husnain T(2010) plants Plant Sci 178 390-397
[10]  
Banyai W(1987)Terpenoids from the seeds of EMBO J 6 3901-3907