Comparative Transcriptome Analysis of Three Oil Palm Fruit and Seed Tissues That Differ in Oil Content and Fatty Acid Composition
2013
Dussert, Stéphane | Guerin, Chloe | Andersson, Mariette | Joet, Thierry | Tranbarger, Timothy J. | Pizot, Maxime | Sarah, Gautier | Omore, Alphonse | Durand-Gasselin, Tristan | Morcillo, Fabienne | Diversité, adaptation, développement des plantes (UMR DIADE) ; Centre de Coopération Internationale en Recherche Agronomique pour le Développement (Cirad)-Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche pour le Développement (IRD [Occitanie]) | PalmElit | Dept Plant Breeding ; Swedish University of Agricultural Sciences = Sveriges lantbruksuniversitet (SLU) | Institut de Recherche pour le Développement (IRD) | Amélioration génétique et adaptation des plantes méditerranéennes et tropicales (UMR AGAP) ; Centre de Coopération Internationale en Recherche Agronomique pour le Développement (Cirad)-Institut National de la Recherche Agronomique (INRA)-Centre international d'études supérieures en sciences agronomiques (Montpellier SupAgro)-Institut national d’études supérieures agronomiques de Montpellier (Montpellier SupAgro) | Ctr Rech Agr Plantes Perennes ; Institut National de Recherche Agricole du Bénin (INRAB) | PalmElit; Institut de Recherche pour le Developpement; Centre de Cooperation Internationale en Recherche Agronomique pour le Developpement; SouthGreen Bioinformatics Platform; high performance cluster of the Unite Mixte de Recherche Amelioration Genetique et Adaptation des Plantes Mediterraneennes et Tropicales, Centre de Cooperation Internationale en Recherche Agronomique
UMR AGAP - équipe ID - Intégration des données
Show more [+] Less [-]English. Oil palm (Elaeis guineensis) produces two oils of major economic importance, commonly referred to as palm oil and palm kernel oil, extracted from the mesocarp and the endosperm, respectively. While lauric acid predominates in endosperm oil, the major fatty acids (FAs) of mesocarp oil are palmitic and oleic acids. The oil palm embryo also stores oil, which contains a significant proportion of linoleic acid. In addition, the three tissues display high variation for oil content at maturity. To gain insight into the mechanisms that govern such differences in oil content and FA composition, tissue transcriptome and lipid composition were compared during development. The contribution of the cytosolic and plastidial glycolytic routes differed markedly between the mesocarp and seed tissues, but transcriptional patterns of genes involved in the conversion of sucrose to pyruvate were not related to variations for oil content. Accumulation of lauric acid relied on the dramatic up-regulation of a specialized acyl-acyl carrier protein thioesterase paralog and the concerted recruitment of specific isoforms of triacylglycerol assembly enzymes. Three paralogs of the WRINKLED1 (WRI1) transcription factor were identified, of which EgWRI1-1 and EgWRI1-2 were massively transcribed during oil deposition in the mesocarp and the endosperm, respectively. None of the three WRI1 paralogs were detected in the embryo. The transcription level of FA synthesis genes correlated with the amount of WRI1 transcripts and oil content. Changes in triacylglycerol content and FA composition of Nicotiana benthamiana leaves infiltrated with various combinations of WRI1 and FatB paralogs from oil palm validated functions inferred from transcriptome analysis.
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