AbstractAlthough there is much knowledge of the enzymology (and genes coding the proteins) of lipid biosynthesis in higher plants, relatively little attention has been paid to regulation. We have demonstrated the important role for cholinephosphate cytidylyltransferase in the biosynthesis of the major extra-plastidic membrane lipid, phosphatidylcholine. We followed this work by applying control analysis to light-induced fatty acid synthesis. This was the first such application to lipid synthesis in any organism. The data showed that acetyl-CoA carboxylase was very important, exerting about half of the total control. We then applied metabolic control analysis to lipid accumulation in important oil crops — oilpalm, olive, and rapeseed. Recent...
This chapter discusses engineering of plants for yield and composition of edible and industrial tria...
International audienceIn plant, unusual fatty acids are produced by a limited number of species. The...
In the plastids of plant cells, fatty acid (FA) production is a central biosynthetic process. It pro...
Although there is much knowledge of the enzymology (and genes coding the proteins) of lipid biosynth...
Top-Down (Metabolic) Control Analysis (TDCA) was used to examine, quantitatively, lipid biosynthesis...
Summary • Oil crops are a very important commodity. Although many genes and enzymes involved in l...
AbstractOil crops are in increasing demand both for food and as renewable sources of chemicals. It i...
Plant oils are a very valuable agricultural commodity. They are currently mainly used (>80%) for foo...
This chapter describes similarities between biochemistry of lipid metabolism in plants and other org...
Plant storage oils are of major commercial importance, yet our understanding of the regulation and c...
Plant oil biosynthesis involves a complex metabolic network with multiple subcellular compartments, ...
Metabolic control analysis allows the study of metabolic regulation. We applied both single- and dou...
Oil crops are in increasing demand both for food and as renewable sources of chemicals. It is theref...
Degradation of unusual fatty acids through β-oxidation within transgenic plants has long been hypoth...
This chapter discusses engineering of plants for yield and composition of edible and industrial tria...
International audienceIn plant, unusual fatty acids are produced by a limited number of species. The...
In the plastids of plant cells, fatty acid (FA) production is a central biosynthetic process. It pro...
Although there is much knowledge of the enzymology (and genes coding the proteins) of lipid biosynth...
Top-Down (Metabolic) Control Analysis (TDCA) was used to examine, quantitatively, lipid biosynthesis...
Summary • Oil crops are a very important commodity. Although many genes and enzymes involved in l...
AbstractOil crops are in increasing demand both for food and as renewable sources of chemicals. It i...
Plant oils are a very valuable agricultural commodity. They are currently mainly used (>80%) for foo...
This chapter describes similarities between biochemistry of lipid metabolism in plants and other org...
Plant storage oils are of major commercial importance, yet our understanding of the regulation and c...
Plant oil biosynthesis involves a complex metabolic network with multiple subcellular compartments, ...
Metabolic control analysis allows the study of metabolic regulation. We applied both single- and dou...
Oil crops are in increasing demand both for food and as renewable sources of chemicals. It is theref...
Degradation of unusual fatty acids through β-oxidation within transgenic plants has long been hypoth...
This chapter discusses engineering of plants for yield and composition of edible and industrial tria...
International audienceIn plant, unusual fatty acids are produced by a limited number of species. The...
In the plastids of plant cells, fatty acid (FA) production is a central biosynthetic process. It pro...