Comparative Proteomics Analysis Reveals the Molecular Mechanisms Underlying the Accumulation Difference of Bioactive Constituents in Taxilli Herba from Two Hosts

被引:0
作者
Jiahuan Yuan
Nan Wu
Wei Yang
Zhichen Cai
Cuihua Chen
Yongyi Zhou
Haijie Chen
Jia Xue
Xunhong Liu
Wenxin Wang
Jianming Cheng
Li Li
机构
[1] Nanjing University of Chinese Medicine,College of Pharmacy
[2] Jiangsu Province Engineering Research Center of Classical Prescription,College of Pharmacy
[3] Guangxi University of Chinese Medicine,undefined
来源
Journal of Plant Growth Regulation | 2024年 / 43卷
关键词
Taxilli Herba; Comparative proteomics; Metabolomics; Bioactive constituents; Hosts; Molecular mechanisms;
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中图分类号
学科分类号
摘要
Taxilli Herba (TH) is famous for semi-parasitic feature, with hundreds of host species. The content of bioactive constituents varies in TH from different hosts. To gain insight into the molecular mechanisms of the synthesis and accumulation of bioactive constituents in TH from different hosts, we performed proteomics combined with metabolomics to investigate TH from two common hosts of Morus alba L. and Liquidambar formosana Hance. Tandem mass tag (TMT)-based quantitative proteomics were used for analysis. A total of 533 differentially expressed proteins were detected, of which 259 were significantly up-regulated and 274 significantly down-regulated in expression levels. DEPs were shown to be mostly engaged in cellular process and metabolic process by GO analysis. DEPs were considerably abundant in amino acid metabolic pathways, according to KEGG pathway analysis. 16 bioactive constituents were quantitatively determined by ultrafast liquid chromatography simultaneously coupled with triple quadrupole/linear ion trap tandem mass spectrometry (UFLC-QTRAP-MS/MS). Meanwhile, the changes in the contents of 16 bioactive constituents were mostly compatible with the expression patterns of relevant structural proteins. The results of this study will provide basic information about the role of protein in the secondary metabolism biosynthesis pathway and the molecular mechanism of the quality formation of TH.
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页码:563 / 575
页数:12
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