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[党参CpPMM基因的克隆与表达分析]

[Cloning and expression analysis of CpPMM gene in Codonopsis pilosula].

作者信息

Shou-Bo Cao, Xiao-Lin Wang, Jiao-Jiao J I, Ya-Rong Wang, Jian-Ping Gao

机构信息

College of Pharmacy, Shanxi Medical University Jinzhong 030600, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2020 Sep;45(18):4382-4391. doi: 10.19540/j.cnki.cjcmm.20200626.101.

Abstract

GDP-mannose is an important precursor for the synthesis of Codonopsis pilosula polysaccharides and involved in the synthesis of sugar chains. Phosphomannomutase(PMM)catalyzes the conversion of mannose-6-phosphate(Man-6-P)to mannose-1-phosphate(Man-1-P)to synthesize GDP-mannose. In this study, specific primers were designed based on the PMM gene sequence information in transcriptome data, and the full length of the C. pilosula PMM gene was cloned and named CpPMM. The correlation between the CpPMM gene expression and C. pilosula polysaccharide synthesis was analyzed by a series of bioinformatics analysis, prokaryotic expression and qRT-PCR. The results show that the CpPMM gene contains a 741 bp open reading frame(ORF), encoding 246 amino acids, which is highly similar to the PMM of other species and highly homologous to the Helianthus annuus from the Asteraceae family. It was predicted to be a hydrophilic non-transmembrane protein without signal peptide, which was predicted to be located in the cytoplasm with multiple phosphorylation sites. Combined with predictive analysis of conserved domains, this protein belongs to the HAD(haloacid dehalogenase)superfamily; prokaryotic expression studies show that the size of the CpPMM fusion protein is about 29 kDa, which is consistent with the relative molecular mass predicted. The target protein is an inclusion body and is partially soluble. The qRT-PCR results showed that the CpPMM gene exerted spatiotemporal expression patterns, and the expression level in fruiting period was significantly higher than that in the other three periods such as the flowering period. Along with the growth period of C. pilosula, the polysaccharide content of C. pilosula showed a gradual increase trend, reaching the highest during the harvest time. And there are significant differences in the polysaccharide content of C. pilosula in each period. In this study, the CpPMM gene was cloned from the root of C. pilosula, at the same time, the prokaryotic expression system was constructed. In addition, its gene expression level is highly correlated with the polysaccharide content of C. pilosula. It lays the foundation for further studying the function of CpPMM gene and the analysis of biosynthetic pathways of polysaccharides in medicinal plants.

摘要

GDP-甘露糖是党参多糖合成的重要前体,参与糖链的合成。磷酸甘露糖变位酶(PMM)催化6-磷酸甘露糖(Man-6-P)转化为1-磷酸甘露糖(Man-1-P)以合成GDP-甘露糖。本研究基于转录组数据中的PMM基因序列信息设计特异性引物,克隆了党参PMM基因的全长并命名为CpPMM。通过一系列生物信息学分析、原核表达及qRT-PCR分析了CpPMM基因表达与党参多糖合成之间的相关性。结果表明,CpPMM基因含有一个741 bp的开放阅读框(ORF),编码246个氨基酸,与其他物种的PMM高度相似,与菊科向日葵的同源性较高。预测其为亲水性非跨膜蛋白,无信号肽,预测定位于细胞质中,具有多个磷酸化位点。结合保守结构域预测分析,该蛋白属于HAD(卤代酸脱卤酶)超家族;原核表达研究表明,CpPMM融合蛋白大小约为29 kDa,与预测的相对分子质量一致。目标蛋白为包涵体且部分可溶。qRT-PCR结果表明,CpPMM基因呈现时空表达模式,结果期的表达水平显著高于花期等其他三个时期。随着党参生长时期的推进,党参多糖含量呈逐渐增加趋势,在收获期达到最高。且党参各时期多糖含量存在显著差异。本研究从党参根中克隆了CpPMM基因,同时构建了原核表达系统。此外,其基因表达水平与党参多糖含量高度相关。为进一步研究CpPMM基因功能及药用植物多糖生物合成途径分析奠定了基础。

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