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外源性添加前体物质可协同提高轮叶王孙(Picrorhiza kurroa Royle ex Benth.)芽培养物中天麻素-I 的生物合成。

Exogenous feeding of immediate precursors reveals synergistic effect on picroside-I biosynthesis in shoot cultures of Picrorhiza kurroa Royle ex Benth.

机构信息

Department of Biotechnology and Bioinformatics, Jaypee University of Information Technology, Waknaghat-173234, Solan (HP), India.

出版信息

Sci Rep. 2016 Jul 15;6:29750. doi: 10.1038/srep29750.

Abstract

In the current study, we asked how the supply of immediate biosynthetic precursors i.e. cinnamic acid (CA) and catalpol (CAT) influences the synthesis of picroside-I (P-I) in shoot cultures of P. kurroa. Our results revealed that only CA and CA+CAT stimulated P-I production with 1.6-fold and 4.2-fold, respectively at 2.5 mg/100 mL concentration treatment. Interestingly, feeding CA+CAT not only directed flux towards p-Coumaric acid (p-CA) production but also appeared to trigger the metabolic flux through both shikimate/phenylpropanoid and iridoid pathways by utilizing more of CA and CAT for P-I biosynthesis. However, a deficiency in the supply of either the iridoid or the phenylpropanoid precursor limits flux through the respective pathways as reflected by feedback inhibition effect on PAL and decreased transcripts expressions of rate limiting enzymes (DAHPS, CM, PAL, GS and G10H). It also appears that addition of CA alone directed flux towards both p-CA and P-I production. Based on precursor feeding and metabolic fluxes, a current hypothesis is that precursors from both the iridoid and shikimate/phenylpropanoid pathways are a flux limitation for P-I production in shoot cultures of P. kurroa plants. This work thus sets a stage for future endeavour to elevate production of P-I in cultured plant cells.

摘要

在本研究中,我们研究了即时生物合成前体(即肉桂酸(CA)和梓醇(CAT))的供应如何影响 shoot 培养物中 shoot 培养物中胡黄连苷 I(P-I)的合成。我们的结果表明,只有 CA 和 CA+CAT 在 2.5mg/100mL 浓度处理下分别刺激 P-I 产生了 1.6 倍和 4.2 倍的增加。有趣的是,CA+CAT 的喂养不仅指导了 p-香豆酸(p-CA)的产生,而且似乎通过利用更多的 CA 和 CAT 来触发莽草酸/苯丙素途径和裂环环烯醚萜途径的代谢通量,从而触发了代谢通量。然而,无论是裂环环烯醚萜还是苯丙素前体的供应不足,都会限制各自途径的通量,这反映在 PAL 的反馈抑制作用和限速酶(DAHPS、CM、PAL、GS 和 G10H)的转录物表达减少上。似乎单独添加 CA 也会引导通量向 p-CA 和 P-I 的产生。基于前体喂养和代谢通量,目前的假设是,裂环环烯醚萜和莽草酸/苯丙素途径的前体都是 shoot 培养物中 P-I 产生的通量限制。这项工作为未来在培养植物细胞中提高 P-I 产量的努力奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91d9/4945949/45ffd8d7a615/srep29750-f1.jpg

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