Elucidation of the melitidin biosynthesis pathway in pummelo.

Publication Overview
TitleElucidation of the melitidin biosynthesis pathway in pummelo.
AuthorsShen S, Wang S, Yang C, Wang C, Zhou Q, Zhou S, Zhang R, Li Y, Wang Z, Dai L, Peng W, Hao Y, Guo H, Cao G, Liu X, Yao F, Xu Q, Fernie AR, Luo J
TypeJournal Article
Journal NameJournal of integrative plant biology
Year2023
CitationShen S, Wang S, Yang C, Wang C, Zhou Q, Zhou S, Zhang R, Li Y, Wang Z, Dai L, Peng W, Hao Y, Guo H, Cao G, Liu X, Yao F, Xu Q, Fernie AR, Luo J. Elucidation of the melitidin biosynthesis pathway in pummelo.. Journal of integrative plant biology. 2023 Sep 07.

Abstract

Specialized plant metabolism is a rich resource of compounds for drug discovery. The acylated flavonoid glycoside melitidin is being developed as an anti-cholesterol statin drug candidate, but its biosynthetic route in plants has not yet been fully characterized. Here, we describe the gene discovery and functional characterization of a new flavonoid gene cluster (UDP-glucuronosyltransferases [CgUGTs], 1,2 rhamnosyltransferase [Cg1,2RhaT], acyltransferases [CgATs]) that is responsible for melitidin biosynthesis in pummelo (Citrus grandis (L.) Osbeck). Population variation analysis indicated that the tailoring acyltransferases, specific for bitter substrates, mainly determine the natural abundance of melitidin. Moreover, HMG-CoA reductase enzyme inhibition assays showed that the product from this metabolic gene cluster, melitidin, may be an effective anti-cholesterol statin drug candidate. Co-expression of these clustered genes in Nicotiana benthamiana resulted in the formation of melitidin, demonstrating the potential for metabolic engineering of melitidin in a heterologous plant system. This study establishes a biosynthetic pathway for melitidin, which provides genetic resources for the breeding and genetic improvement of pummelo aimed at fortifying the content of biologically active metabolites. This article is protected by copyright. All rights reserved.

Features
This publication contains information about 13 features:
Feature NameUniquenameType
Cg9g025790_chr9_36821342Cg9g025790_chr9_36821342genetic_marker
Cg9g025790_chr9_36821476Cg9g025790_chr9_36821476genetic_marker
Cg9g025790_chr9_36821508Cg9g025790_chr9_36821508genetic_marker
Cg9g025790_chr9_36821559Cg9g025790_chr9_36821559genetic_marker
Cg9g025790_chr9_36821678Cg9g025790_chr9_36821678genetic_marker
Cg9g025790_chr9_36821916Cg9g025790_chr9_36821916genetic_marker
Cg9g025790Cg9g025790_Hzau_Citrus_maxima_v1gene
Melitidin concentrationGWAS0000398GWAS
Melitidin concentrationGWAS0000399GWAS
Melitidin concentrationGWAS0000400GWAS
Melitidin concentrationGWAS0000401GWAS
Melitidin concentrationGWAS0000402GWAS
Melitidin concentrationGWAS0000403GWAS
Projects
This publication contains information about 1 projects:
Project NameDescription
Pummelo-Melitidin_biosynthesis-Shen-2023
Properties
Additional details for this publication include:
Property NameValue
Publication ModelPrint-Electronic
ISSN1744-7909
eISSN1744-7909
Publication Date2023 Sep 07
Journal AbbreviationJ Integr Plant Biol
DOI10.1111/jipb.13564
Elocation10.1111/jipb.13564
CopyrightThis article is protected by copyright. All rights reserved.
LanguageEnglish
Language Abbreng
Publication TypeJournal Article
Journal CountryChina (Republic : 1949- )