Deciphering gamma-decalactone biosynthesis in strawberry fruit using a combination of genetic mapping, RNA-Seq and eQTL analyses

Publication Overview
TitleDeciphering gamma-decalactone biosynthesis in strawberry fruit using a combination of genetic mapping, RNA-Seq and eQTL analyses
AuthorsSanchez-Sevilla JF, Crus-Rus E, Valpuesta V, Botella MA, Amaya I.
TypeJournal Article
Journal NameBMC Genomics
Volume15
Year2014
Page(s)218
CitationSanchez-Sevilla JF, Crus-Rus E, Valpuesta V, Botella MA, Amaya I.. Deciphering gamma-decalactone biosynthesis in strawberry fruit using a combination of genetic mapping, RNA-Seq and eQTL analyses. BMC Genomics. 2014; 15:218.

Abstract

Background Understanding the basis for volatile organic compound (VOC) biosynthesis and regulation is of great importance for the genetic improvement of fruit flavor. Lactones constitute an essential group of fatty acid-derived VOCs conferring peach-like aroma to a number of fruits including peach, plum, pineapple and strawberry. Early studies on lactone biosynthesis suggest that several enzymatic pathways could be responsible for the diversity of lactones, but detailed information on them remained elusive. In this study, we have integrated genetic mapping and genome-wide transcriptome analysis to investigate the molecular basis of natural variation in γ-decalactone content in strawberry fruit. Results As a result, the fatty acid desaturase FaFAD1 was identified as the gene underlying the locus at LGIII-2 that controls γ-decalactone production in ripening fruit. The FaFAD1 gene is specifically expressed in ripe fruits and its expression fully correlates with the presence of γ-decalactone in all 95 individuals of the mapping population. In addition, we show that the level of expression of FaFAH1, with similarity to cytochrome p450 hydroxylases, significantly correlates with the content of γ-decalactone in the mapping population. The analysis of expression quantitative trait loci (eQTL) suggests that the product of this gene also has a regulatory role in the biosynthetic pathway of lactones. Conclusions Altogether, this study provides mechanistic information of how the production of γ-decalactone is naturally controlled in strawberry, and proposes enzymatic activities necessary for the formation of this VOC in plants.
Features
This publication contains information about 397 features:
Feature NameUniquenameType
F39810-40:G>AF39810-40:G>Agenetic_marker
F40029-28:G>AF40029-28:G>Agenetic_marker
F40525-48:A>GF40525-48:A>Ggenetic_marker
F40542-40:A>CF40542-40:A>Cgenetic_marker
F41100-37:T>GF41100-37:T>Ggenetic_marker
F41412-64:C>TF41412-64:C>Tgenetic_marker
F41914-64:T>CF41914-64:T>Cgenetic_marker
F42124-32:T>AF42124-32:T>Agenetic_marker
F42772-29:A>GF42772-29:A>Ggenetic_marker
F42921F42921genetic_marker
F43116-35:A>TF43116-35:A>Tgenetic_marker
F43574-42:G>AF43574-42:G>Agenetic_marker
F43611-47:T>GF43611-47:T>Ggenetic_marker
F44394-7:A>GF44394-7:A>Ggenetic_marker
F44845-23:T>GF44845-23:T>Ggenetic_marker
F45127-21:T>CF45127-21:T>Cgenetic_marker
F45318-37:G>AF45318-37:G>Agenetic_marker
F46166-12:T>CF46166-12:T>Cgenetic_marker
F727-47:C>TF727-47:C>Tgenetic_marker
FaFL2FaFL2genetic_marker
Fran-00573Fran-00573genetic_marker
Fran-01350Fran-01350genetic_marker
Fran-16010Fran-16010genetic_marker
Fran-23896Fran-23896genetic_marker
Fran-30655Fran-30655genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Strawberry-Decalactone_biosynthesis-Sanchez-Sevilla-2014
Featuremaps
This publication contains information about 1 maps:
Map Name
Strawberry-232x1392-F1-2014