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Breeding high-stearic oilseed rape (Brassica napus) with high- and low-erucic background using optimised promoter-gene constructs

Zugehörigkeit
Department of Plant Breeding, Institute of Crop Science and Plant Breeding I, Justus-Liebig- University, Gießen, Germany
Zarhloul, M. Karim;
Zugehörigkeit
Department of Plant Breeding, Institute of Crop Science and Plant Breeding I, Justus-Liebig- University, Gießen, Germany
Stoll, Christof;
Zugehörigkeit
Department of Plant Breeding, Institute of Crop Science and Plant Breeding I, Justus-Liebig- University, Gießen, Germany
Lühs, Wilfried;
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, IRZ Geilweilerhof, Siebeldingen, Germany
Syring-Ehemann, Alexandra;
GND
172910692
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, IRZ Geilweilerhof, Siebeldingen, Germany
Hausmann, Ludger;
GND
1059151928
Zugehörigkeit
Federal Centre for Breeding Research on Cultivated Plants, IRZ Geilweilerhof, Siebeldingen, Germany
Töpfer, Reinhard;
GND
143673491
Zugehörigkeit
Department of Plant Breeding, Institute of Crop Science and Plant Breeding I, Justus-Liebig- University, Gießen, Germany
Friedt, Wolfgang

Seed lipids of oilseed rape (Brassica napus) usually contain small proportions ( < 3%) of stearic acid. The objective of this study was to increase the content of stearic fatty acid in rapeseed oil. An antisense down-regulation of the endogenous stearoyl-ACP desaturase (SAD) catalysing the reaction step from stearic to oleic acid in two different genetic backgrounds was studied. The result of down-regulation of the SAD yielded an about 10-fold increase of stearic acid from 3.7% up to 32% in single seeds of transgenic lowerucic acid rapeseed (LEAR), while high-erucic acid rapeseed (HEAR) showed a 4-fold increase of C18:0 from 1% up to 4%. It could be shown in pooled T2 seed material of LEAR rapeseed, that the stearic acid content is highly correlated with the down-regulation of SAD as indicated by the stearate desaturation proportion (SDP). The importance of the promoter strength for the alteration of a trait was confirmed in this study as no change in the fatty acid composition of transgenic plants was achieved with gene constructs controlled by the weak FatB4 seed-specific promoter from Cuphea lanceolata.

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