Skip to main navigation Skip to search Skip to main content

Comparative metabolomics combined with genome sequencing provides insights into novel wolfberry-specific metabolites and their formation mechanisms

  • Qiyuan Long
  • , Changjian Zhang
  • , Hui Zhu
  • , Yutong Zhou
  • , Shuo Liu
  • , Yanchen Liu
  • , Xuemin Ma
  • , Wei An
  • , Jun Zhou
  • , Jianhua Zhao
  • , Yuanyuan Zhang
  • , Cheng Jin

Publication: Contribution to journalJournal articlepeer-review

Abstract

Wolfberry (Lycium, of the family Solanaceae) has special nutritional benefits due to its valuable metabolites. Here, 16 wolfberry-specific metabolites were identified by comparing the metabolome of wolfberry with those of six species, including maize, rice, wheat, soybean, tomato and grape. The copy numbers of the riboflavin and phenyllactate degradation genes riboflavin kinase (RFK) and phenyllactate UDP-glycosyltransferase (UGT1) were lower in wolfberry than in other species, while the copy number of the phenyllactate synthesis gene hydroxyphenyl-pyruvate reductase (HPPR) was higher in wolfberry, suggesting that the copy number variation of these genes among species may be the main reason for the specific accumulation of riboflavin and phenyllactate in wolfberry. Moreover, the metabolome-based neighbor-joining tree revealed distinct clustering of monocots and dicots, suggesting that metabolites could reflect the evolutionary relationship among those species. Taken together, we identified 16 specific metabolites in wolfberry and provided new insight into the accumulation mechanism of species-specific metabolites at the genomic level.
Original languageEnglish
Article number1392175
Number of pages12
JournalFrontiers in Plant Science
Volume15
DOIs
Publication statusPublished - 2024

Keywords

  • metabolome
  • nutrition
  • riboflavin
  • phenyllactate
  • copy number variation

Cite this