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首页> 外文期刊>Journal of proteomics >Proteomics analysis of Mahonia bealei leaves with induction of alkaloids via combinatorial peptide ligand libraries
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Proteomics analysis of Mahonia bealei leaves with induction of alkaloids via combinatorial peptide ligand libraries

机译:通过组合肽配体文库诱导生物碱诱导的大红花叶片蛋白质组学分析

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Alkaloids are one of the most attractive sources for obtaining active natural products. However, alkaloids exist in the plants as the secondary metabolites with tracing amount, and there is an enormous demand for a large production. In the present study, we aimed to profile the modification of benzylisoquinoline alkaloids in Mahonia bealei seedlings under the binary stress of ultraviolet-B irradiation and dark incubation. Comparative proteomics analysis was carried out to address the underlying proteome variations that accounted for the alkaloid induction under treatment. Thirteen differential proteins were identified in the leaves under binary stress. Of note, the abundance of S-adenosyl-L-methionine synthetase was highly increased to sustain a high concentration of S-adenosyl-L-methionine for the enhanced biosynthesis of alkaloids. Additionally, we presented the application of CPLL to M. bealei leaf proteins. Three new secondary metabolism proteins and 12 additional differential proteins were identified only after CPLL treatment. Six genes in the benzylisoquinoline alkaloid biosynthesis pathway were selected to verify their variable expression using quantitative real time polymerase chain reaction. The results suggest that the benzylisoquinoline alkaloids in M. bealei leaf were increased to eliminate the adverse effect of UV-B exposure. The suppression of photosynthesis and respiratory rate may save an extra energy for the secondary metabolites, and the enhanced N-metabolism may supply sufficient primary metabolite precursors. To our best knowledge, this is the first work aimed at the secondary metabolism proteomic characterization of M. bealei using the CPLL technique. It also presented an effective and innovative process to improve the contents of alkaloids in medicinal plants for industrial production.Biological significance Besides the effective and innovative process to improve the contents of alkaloids in M. bealei leaves for industrial production, the presented combinatorial hexapeptide ligand library technology was applied for the study of low-abundance protein in medicinal plant. It may be an available tool for the analysis of the secondary proteins.
机译:生物碱是获得活性天然产物的最有吸引力的来源之一。但是,生物碱作为微量的次生代谢产物存在于植物中,因此对于大量生产存在巨大的需求。在本研究中,我们旨在概述在紫外线-B辐射和黑暗孵育的二元胁迫下,Bahei幼苗中苄基异喹啉生物碱的修饰情况。进行了比较蛋白质组学分析以解决潜在的蛋白质组变异,这些变异解释了所治疗生物碱的诱导作用。在二元胁迫下,在叶片中鉴定出十三种差异蛋白。值得注意的是,为了增强生物碱的生物合成,S-腺苷-L-蛋氨酸合成酶的丰度大大增加以维持高浓度的S-腺苷-L-蛋氨酸。此外,我们介绍了CPLL在贝氏分支杆菌叶蛋白中的应用。仅在CPLL处理后才鉴定出三个新的次级代谢蛋白和12个其他差异蛋白。使用定量实时聚合酶链反应选择了苄基异喹啉生物碱生物合成途径中的六个基因,以验证其可变表达。结果表明,增加了贝氏杆菌叶中的苄基异喹啉生物碱,从而消除了UV-B暴露的不利影响。光合作用和呼吸频率的抑制可为次级代谢物节省额外的能量,而增强的N代谢可提供足够的初级代谢物前体。据我们所知,这是首次针对使用CPLL技术对贝氏疟原虫进行次级代谢蛋白质组学表征的工作。生物学意义除了提高工业生产中贝氏甲烷八叠球叶片中生物碱含量的有效创新方法外,提出的组合六肽配体库该技术被用于药用植物中低丰度蛋白质的研究。它可能是分析二级蛋白质的可用工具。

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