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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Metabolic alteration of Catharanthus roseus cell suspension cultures overexpressing geraniol synthase in the plastids or cytosol
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Metabolic alteration of Catharanthus roseus cell suspension cultures overexpressing geraniol synthase in the plastids or cytosol

机译:核心色细胞悬浮蛋白含量过表达塑体或细胞溶溶胶的核心核糖细胞悬浮酶的代谢改变

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摘要

Previous studies showed that geraniol could be an upstream limiting factor in the monoterpenoid pathway towards the production of terpenoid indole alkaloid (TIA) in Catharanthus roseus cells and hairy root cultures. This shortage in precursor availability could be due to (1) limited expression of the plastidial geraniol synthase resulted in a low activity of the enzyme to catalyze the conversion of geranyl diphosphate to geraniol; or (2) the limitation of geraniol transport from plastids to cytosol. Therefore, in this study, C. roseus's geraniol synthase (CrGES) gene was overexpressed in either plastids or cytosol of a non-TIA producing C. roseus cell line. The expression of CrGES in the plastids or cytosol was confirmed and the constitutive transformation lines were successfully established. A targeted metabolite analysis using HPLC shows that the transformed cell lines did not produce TIA or iridoid precursors unless elicited with jasmonic acid, as their parent cell line. This indicates a requirement for expression of additional, inducible pathway genes to reach production of TIA in this cell line. Interestingly, further analysis using NMR-based metabolomics reveals that the overexpression of CrGES impacts primary metabolism differently if expressed in the plastids or cytosol. The levels of valine, leucine, and some metabolites derived from the shikimate pathway, i.e. phenylalanine and tyrosine were significantly higher in the plastidial- but lower in the cytosolic-CrGES overexpressing cell lines. This result shows that overexpression of CrGES in the plastids or cytosol caused alteration of primary metabolism that associated to the plant cell growth and development. A comprehensive omics analysis is necessary to reveal the full effect of metabolic engineering.
机译:以前的研究表明,大竺葵可以是朝鲜萜烯吲哚生物碱(TIA)在Catharanthus Roseus细胞和毛发根培养中产生的单调吲哚生物碱(TIA)的上游限制因素。前体可用性的这种短缺可能是由于(1)塑性吡喃醇合成酶的有限表达导致酶的低活性,以催化天竺葵二磷酸二磷酸二磷酸二磷酸酯的转化率;或(2)将Geraniol从塑体转运到细胞溶溶胶的限制。因此,在本研究中,在非TIA的血管生成C.玫瑰丝细胞系的塑体或细胞溶胶中过表达C. roseus的大竺葵合酶(梯形)基因。确认了体积或细胞溶溶胶中桁粒的表达,并成功地建立了组成型转化线。使用HPLC的靶向代谢物分析表明,除非用茉莉酸,作为其亲本细胞系,否则转化的细胞系未产生TIA或虹膜原体。这表明需要表达另外的诱导途径基因,以在该细胞系中达到TIA的产生。有趣的是,使用基于NMR的代谢物的进一步分析表明,如果在体积或细胞溶溶胶中表达,桁架的过表达会影响初级代谢。缬氨酸,亮氨酸和一些代谢物源自Shikimate途径,即苯丙氨酸和酪氨酸在过表达细胞系过表达细胞系的细胞溶血池中显着较高。该结果表明,体积或细胞溶溶胶中的桁架过度表达导致初级代谢的改变与植物细胞生长和发育相关。综合的OMICS分析是揭示代谢工程的全部效果。

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