Biosynthesis and Desaturation of Prokaryotic Galactolipids in Leaves and Isolated Chloroplasts from Spinach
Open Access
- 1 May 1991
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 96 (1) , 144-152
- https://doi.org/10.1104/pp.96.1.144
Abstract
Mono- and digalactosyldiacylglycerol (MGDG and DGDG) were isolated from the leaves of sixteen 16:3 plants. In all of these plant species, the sn-2 position of MGDG was more enriched in C16 fatty acids than sn-2 of DGDG. The molar ratios of prokaryotic MGDG to prokaryotic DGDG ranged from 4 to 10. This suggests that 16:3 plants synthesize more prokaryotic MGDG than prokaryotic DGDG. In the 16:3 plant Spinacia oleracea L. (spinach), the formation of prokaryotic galactolipids was studied both in vivo and in vitro. In intact spinach leaves as well as in chloroplasts isolated from these leaves, radioactivity from [1-14C]acetate accumulated 10 times faster in MGDG than in DGDG. After 2 hours of incorporation, most labeled galactolipids from leaves and all labeled galactolipids from isolated chloroplasts were in the prokaryotic configuration. Both in vivo and in vitro, the desaturation of labeled palmitate and oleate to trienoic fatty acids was higher in MGDG than in DGDG. In leaves, palmitate at the sn-2 position was desaturated in MGDG but not in DGDG. In isolated chloroplasts, palmitate at sn-2 similarly was desaturated only in MGDG, but palmitate and oleate at the sn-1 position were desaturated in MGDG as well as in DGDG. Apparently, palmitate desaturase reacts with sn-1 palmitate in either galactolipid, but does not react with the sn-2 fatty acid of DGDG. These results demonstrate that isolated spinach chloroplasts can synthesize and desaturate prokaryotic MGDG and DGDG. The finally accumulating molecular species, MGDG(18:3/16:3) and DGDG(18:3/16:0), are made by the chloroplasts in proportions similar to those found in leaves.Keywords
This publication has 15 references indexed in Scilit:
- Biosynthesis of Digalactosyldiacylglycerol in Plastids from 16:3 and 18:3 PlantsPlant Physiology, 1990
- A Mutant of Arabidopsis Deficient in Desaturation of Palmitic Acid in Leaf LipidsPlant Physiology, 1989
- A Mutant of Arabidopsis Deficient in the Chloroplast 16:1/18:1 DesaturasePlant Physiology, 1989
- The Effect of Temperature on the Level and Biosynthesis of Unsaturated Fatty Acids in Diacylglycerols of Brassica napus LeavesPlant Physiology, 1988
- Altered regulation of lipid biosynthesis in a mutant of Arabidopsis deficient in chloroplast glycerol-3-phosphate acyltransferase activityProceedings of the National Academy of Sciences, 1988
- Synthesis of Mono- and Digalactosyldiacylglycerol in Isolated Spinach ChloroplastsPlant Physiology, 1988
- Metabolism of exogenous long-chain fatty acids by spinach leavesArchives of Biochemistry and Biophysics, 1987
- A Mutant of Arabidopsis Deficient in C18:3 and C16:3 Leaf LipidsPlant Physiology, 1986
- Metabolism of Unsaturated Monogalactosyldiacylglycerol Molecular Species in Arabidopsis thaliana Reveals Different Sites and Substrates for Linolenic Acid SynthesisPlant Physiology, 1986
- Similarities and Differences in Lipid Metabolism of Chloroplasts Isolated from 18:3 and 16:3 PlantsPlant Physiology, 1983