Fig. 3. Expression of genes encoding glucosinolate biosynthetic enzymes correlates with product accumulation. Relative expression levels of selected genes encoding enzymes involved in the core glucosinolate biosynthesis were determined by RT-qPCR method using gene encoding actin as a reference. The obtained values were normalized by dividing each of them by the maximal value obtained for the tested gene in the respective species. Results are means ± SD from three independent experiments, each with four biological replicates (n = 12).Published as part of Czerniawski, Paweł, Piasecka, Anna & Bednarek, Paweł, 2021, Evolutionary changes in the glucosinolate biosynthetic capacity in species representing Capsella, Camelina and Neslia genera, pp. ...
Fig. 7. Stages in the biosynthesis of parent glucosinolates (GSLs) without (A) or with (B) chain elo...
Fig. 8. IGMT phylogenetic tree is incongruent with the phylogeny of the investigated species. A neig...
Fig. 8. Biochemical aspects of aliphatic side chain oxidation of glucosinolates (GSLs). A. Biosynthe...
Czerniawski, Paweł, Piasecka, Anna, Bednarek, Paweł (2021): Evolutionary changes in the glucosinolat...
Fig. 1. General scheme of aliphatic and indolic glucosinolate biosynthesis. Dashed arrows represent ...
Fig. 2. Total accumulation of glucosinolates varies strongly between particular organs and between i...
Fig. 6. Diversification of CYP81F enzymes in the Camelineae species.A neighbor-joining tree of CYP81...
Fig. 5. Divergence of the CYP81F1/3/4 locus in the Camelineae species.Graphical representation of ge...
Fig. 4. The investigated Camelineae species differ from A. thaliana in their glucosinolate modificat...
Fig. 7. Divergence of the IGMT1-4 locus in the Camelineae species. Graphical representation of genom...
Fig. 2. The essence of glucosinolate (GSL) biosynthesis as imagined for the presumably ancient 2-met...
Fig. 4. All glucosinolates (GSLs) derived from aliphatic amino acids known from the tribe Cardaminea...
Fig. 6. Aspects of glucosinolate (GSL) evolution in the order Brassicales with focus on the tribe Ca...
Fig. 3. All glucosinolates (GSLs) derived from aromatic amino acids known from the tribe Cardamineae...
Fig. 5. Structural redundancy and innovation in glucosinolate (GSL) biodiversity. A. Representative ...
Fig. 7. Stages in the biosynthesis of parent glucosinolates (GSLs) without (A) or with (B) chain elo...
Fig. 8. IGMT phylogenetic tree is incongruent with the phylogeny of the investigated species. A neig...
Fig. 8. Biochemical aspects of aliphatic side chain oxidation of glucosinolates (GSLs). A. Biosynthe...
Czerniawski, Paweł, Piasecka, Anna, Bednarek, Paweł (2021): Evolutionary changes in the glucosinolat...
Fig. 1. General scheme of aliphatic and indolic glucosinolate biosynthesis. Dashed arrows represent ...
Fig. 2. Total accumulation of glucosinolates varies strongly between particular organs and between i...
Fig. 6. Diversification of CYP81F enzymes in the Camelineae species.A neighbor-joining tree of CYP81...
Fig. 5. Divergence of the CYP81F1/3/4 locus in the Camelineae species.Graphical representation of ge...
Fig. 4. The investigated Camelineae species differ from A. thaliana in their glucosinolate modificat...
Fig. 7. Divergence of the IGMT1-4 locus in the Camelineae species. Graphical representation of genom...
Fig. 2. The essence of glucosinolate (GSL) biosynthesis as imagined for the presumably ancient 2-met...
Fig. 4. All glucosinolates (GSLs) derived from aliphatic amino acids known from the tribe Cardaminea...
Fig. 6. Aspects of glucosinolate (GSL) evolution in the order Brassicales with focus on the tribe Ca...
Fig. 3. All glucosinolates (GSLs) derived from aromatic amino acids known from the tribe Cardamineae...
Fig. 5. Structural redundancy and innovation in glucosinolate (GSL) biodiversity. A. Representative ...
Fig. 7. Stages in the biosynthesis of parent glucosinolates (GSLs) without (A) or with (B) chain elo...
Fig. 8. IGMT phylogenetic tree is incongruent with the phylogeny of the investigated species. A neig...
Fig. 8. Biochemical aspects of aliphatic side chain oxidation of glucosinolates (GSLs). A. Biosynthe...