Association Study of the 5′UTR Intron of the FAD2-2 Gene With Oleic and Linoleic Acid Content in Olea europaea L
Cultivated olive ( Olea europaea L. subsp. europaea var. europaea ) is the most ancient and spread tree crop in the Mediterranean basin. An important quality trait for the extra virgin olive oil is the fatty acid composition. In particular, a high content of oleic acid and low of linoleic, linolenic...
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Published in | Frontiers in plant science Vol. 11 |
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Main Authors | , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Frontiers Media S.A
13.02.2020
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Subjects | |
Online Access | Get full text |
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Summary: | Cultivated olive (
Olea europaea
L. subsp.
europaea
var.
europaea
) is the most ancient and spread tree crop in the Mediterranean basin. An important quality trait for the extra virgin olive oil is the fatty acid composition. In particular, a high content of oleic acid and low of linoleic, linolenic, and palmitic acid is considered very relevant in the health properties of the olive oil. The oleate desaturase enzyme encoding-gene (
FAD2-2
) is the main responsible for the linoleic acid content in the olive fruit mesocarp and, therefore, in the olive oil revealing to be the most important candidate gene for the linoleic acid biosynthesis. In this study, an
in silico
and structural analysis of the 5′UTR intron of the
FAD2-2
gene was conducted with the aim to explore the natural sequence variability and its role in the gene expression regulation. In order to identify functional allele variants, the 5′UTR intron was isolated and partially sequenced in 97 olive cultivars. The sequence analysis allowed to find a 117-bp insertion including two long duplications never found before in
FAD2-2
genes in olive and the existence of many intron-mediated enhancement (IME) elements. The sequence polymorphism analysis led to detect 39 SNPs. The candidate gene association study conducted for oleic and linoleic acids content revealed seven SNPs and one indel significantly associated able to explain a phenotypic variation ranging from 7% to 16% among the years. Our study highlighted new structural variants within the
FAD2-2
gene in olive, putatively involved in the regulation mechanisms of gene expression associated with the variation of the content of oleic and linoleic acid. |
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Bibliography: | This article was submitted to Crop and Product Physiology, a section of the journal Frontiers in Plant Science Edited by: José Manuel Martínez-Rivas, Instituto de la Grasa (IG), Spain Reviewed by: Juan De Dios Alché, Experimental Station of Zaidín (EEZ), Spain; Maria Cecilia Rousseaux, Centro Regional de Investigaciones Científicas y Transferencia Tecnológica de La Rioja (CRILAR CONICET), Argentina; Qing Liu, Commonwealth Scientific and Industrial Research Organisation (CSIRO), Australia |
ISSN: | 1664-462X 1664-462X |
DOI: | 10.3389/fpls.2020.00066 |