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Results 1 - 10 of 10
EC Number General Information Commentary Reference
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14malfunction expressed in Escherichia coli the transformants disply an increased decanoic acid and lauric acid contents 731878
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14malfunction heterologous expression of AhFatA in Escherichia coli affect bacterial growth and change the fatty acid profiles of the membrane lipid, resulting in directed accumulation towards palmitoleic acid and oleic acid 732192
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14malfunction null, wild type and high-efficiency alleles are transiently expressed in tobacco leaves to check their effect on lipid biosynthesis. Expression of active FatA thioesterases alters the composition of leaf triacylglycerols but does not alter total lipid content. The expression of the wild type and the high-efficiency alleles in Arabidopsis thaliana transgenic seeds results in a strong reduction in oil content and an increase in total saturated fatty acid content 732664
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14malfunction overexpression of ClFATB1 in transgenic tobaccos upregulates thioesterase activities of crude proteins against 16:0-ACP and 18:0-ACP by 20.3 and 5.7%, respectively, and results in an increase in the contents of palmitic and stearic acids by 15.4 and 10.5%, respectively. Ectopic expression of this gene decreases the substrate specificities of crude proteins to unsaturated 18:1-ACP by 12.7% in transgenic tobacco and lowers the contents of oleic, linoleic, and linolenic acids in transgenic leaves 731325, 732639
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14malfunction simultaneous over-expression of a cDNA encoding a native FatB thioesterase and down-regulation of SAD gene expression, leads to plants containing up to 46% saturated fatty acids 732621
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14malfunction when overexpressed in transformant tobacco plants CpFATB affects the fatty acid composition of transformants and is able to increase drought tolerance in these plants 732634
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14metabolism the main change in the Escherichia coli fatty acid composition when CsFatA is expressed is the reduction in unsaturated fatty acids, mainly cis-vaccenic acid (18:1 omega7). This reduction is compensated for by an increase of palmitoleic acid (16:1 omega7) 732615
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14metabolism the main change in the Escherichia coli fatty acid composition when CsFatB is expressed is a decrease in saturated fatty acids and in particular, that of palmitic acid (16:0) that is compensated for with an increase in stearic acid (18.0) 732615
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14physiological function deduced amino acid sequence displays high homology to choroplastic palmitoyl-acyl carrier protein thioesterases from other plants 716555
Show all pathways known for 3.1.2.14Display the word mapDisplay the reaction diagram Show all sequences 3.1.2.14physiological function the enzyme is required for mycorrhiza formation and lipid accumulation of Rhizophagus irregularis 751864
Results 1 - 10 of 10