Molecular Plant Biology and Biotechnology Lab, CSIR-Central Institute of Medicinal and Aromatic Plants, Research Centre, Bengaluru, 560065, India.
Academy of Scientific and Innovative Research (AcSIR), New Delhi, India.
Plant J. 2020 Jul;103(1):248-265. doi: 10.1111/tpj.14725. Epub 2020 Apr 10.
In plants, geranylgeranyl diphosphate (GGPP, C ) synthesized by GGPP synthase (GGPPS) serves as precursor for vital metabolic branches including specialized metabolites. Here, we report the characterization of a GGPPS (CrGGPPS2) from the Madagascar periwinkle (Catharanthus roseus) and demonstrate its role in monoterpene (C )-indole alkaloids (MIA) biosynthesis. The expression of CrGGPPS2 was not induced in response to methyl jasmonate (MeJA), and was similar to the gene encoding type-I protein geranylgeranyltransferase_β subunit (CrPGGT-I_β), which modulates MIA formation in C. roseus cell cultures. Recombinant CrGGPPS2 exhibited a bona fide GGPPS activity by catalyzing the formation of GGPP as the sole product. Co-localization of fluorescent protein fusions clearly showed CrGGPPS2 was targeted to plastids. Downregulation of CrGGPPS2 by virus-induced gene silencing (VIGS) significantly decreased the expression of transcription factors and pathway genes related to MIA biosynthesis, resulting in reduced MIA. Chemical complementation of CrGGPPS2-vigs leaves with geranylgeraniol (GGol, alcoholic form of GGPP) restored the negative effects of CrGGPPS2 silencing on MIA biosynthesis. In contrast to VIGS, transient and stable overexpression of CrGGPPS2 enhanced the MIA biosynthesis. Interestingly, VIGS and transgenic-overexpression of CrGGPPS2 had no effect on the main GGPP-derived metabolites, cholorophylls and carotenoids in C. roseus leaves. Moreover, silencing of CrPGGT-I_β, similar to CrGGPPS2-vigs, negatively affected the genes related to MIA biosynthesis resulting in reduced MIA. Overall, this study demonstrated that plastidial CrGGPPS2 plays an indirect but necessary role in MIA biosynthesis. We propose that CrGGPPS2 might be involved in providing GGPP for modifying proteins of the signaling pathway involved in MIA biosynthesis.
在植物中,香叶基香叶基二磷酸 (GGPP,C ) 由 GGPP 合酶 (GGPPS) 合成,作为包括特殊代谢物在内的重要代谢分支的前体。在这里,我们报告了来自马达加斯加长春花 (长春花) 的 GGPPS (CrGGPPS2) 的特征,并证明了它在单萜 (C )-吲哚生物碱 (MIA) 生物合成中的作用。CrGGPPS2 的表达不因茉莉酸甲酯 (MeJA) 而诱导,并且与编码 I 型蛋白香叶基香叶基转移酶_β亚基 (CrPGGT-I_β) 的基因相似,该基因调节长春花细胞培养物中 MIA 的形成。重组 CrGGPPS2 通过催化 GGPP 的形成作为唯一产物表现出真正的 GGPPS 活性。荧光蛋白融合的共定位清楚地表明 CrGGPPS2 靶向质体。通过病毒诱导的基因沉默 (VIGS) 下调 CrGGPPS2 显著降低了与 MIA 生物合成相关的转录因子和途径基因的表达,导致 MIA 减少。用香叶基香叶醇 (GGol,GGPP 的醇形式) 对 CrGGPPS2-vigs 叶片进行化学互补恢复了 CrGGPPS2 沉默对 MIA 生物合成的负面影响。与 VIGS 相反,CrGGPPS2 的瞬时和稳定过表达增强了 MIA 的生物合成。有趣的是,VIGS 和 CrGGPPS2 的转基因过表达对长春花叶片中的主要 GGPP 衍生代谢物叶绿素和类胡萝卜素没有影响。此外,类似于 CrGGPPS2-vigs,CrPGGT-I_β 的沉默也会对与 MIA 生物合成相关的基因产生负面影响,导致 MIA 减少。总的来说,这项研究表明质体 CrGGPPS2 在 MIA 生物合成中起着间接但必要的作用。我们提出 CrGGPPS2 可能参与提供 GGPP,用于修饰参与 MIA 生物合成的信号通路中的蛋白质。