Characterization of a new GmFAD3A allele in Brazilian CS303TNKCA soybean cultivar |
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Authors: | Luiz Claudio Costa Silva Rafael Delmond Bueno Loreta Buuda da Matta Pedro Henrique Scarpelli Pereira Danyelle Barbosa Mayrink Newton Deniz Piovesan Carlos Sigueyuki Sediyama Elizabeth Pacheco Batista Fontes Andrea J. Cardinal Maximiller Dal-Bianco |
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Affiliation: | 1.Laboratório de Bioquímica Genética de Plantas, 212, BIOAGRO,Universidade Federal de Vi?osa,Vi?osa,Brazil;2.Seeds Bayer Crop Science,Rio Verde,Brazil;3.Laboratório de Biologia Celular e Molecular de Plasmódio,Universidade de S?o Paulo,S?o Paulo,Brazil;4.Departamento de Fitotecnia, sala 205,Universidade Federal de Vi?osa,Vi?osa,Brazil;5.Laboratório de Biologia Molecular de Plantas, Sala 214, BIOAGRO,Universidade Federal de Vi?osa,Vi?osa,Brazil;6.Crop Science Department,North Carollina State University,Raleigh,USA;7.Syngenta Biotechnology, Inc,Research Triangle Park,USA;8.Laboratório de Bioquímica Genética de Plantas, 212, BIOAGRO and Departamento de Bioquímica e Biologia Molecular,Universidade Federal de Vi?osa,Vi?osa,Brazil |
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Abstract: | ![]()
Key MessageWe molecularly characterized a new mutation in the GmFAD3A gene associated with low linolenic content in the Brazilian soybean cultivar CS303TNKCA and developed a molecular marker to select this mutation.AbstractSoybean is one of the most important crops cultivated worldwide. Soybean oil has 13% palmitic acid, 4% stearic acid, 20% oleic acid, 55% linoleic acid and 8% linolenic acid. Breeding programs are developing varieties with high oleic and low polyunsaturated fatty acids (linoleic and linolenic) to improve the oil oxidative stability and make the varieties more attractive for the soy industry. The main goal of this study was to characterize the low linoleic acid trait in CS303TNKCA cultivar. We sequenced CS303TNKCA GmFAD3A, GmFAD3B and GmFAD3C genes and identified an adenine point deletion in the GmFAD3A exon 5 (delA). This alteration creates a premature stop codon, leading to a truncated protein with just 207 residues that result in a non-functional enzyme. Analysis of enzymatic activity by heterologous expression in yeast support delA as the cause of low linolenic acid content in CS303TNKCA. Thus, we developed a TaqMan genotyping assay to associate delA with low linolenic acid content in segregating populations. Lines homozygous for delA had a linolenic acid content of 3.3 to 4.4%, and the variation at this locus accounted for 50.83 to 73.70% of the phenotypic variation. This molecular marker is a new tool to introgress the low linolenic acid trait into elite soybean cultivars and can be used to combine with high oleic trait markers to produce soybean with enhanced economic value. The advantage of using CS303TNKCA compared to other lines available in the literature is that this cultivar has good agronomic characteristics and is adapted to Brazilian conditions. |
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