Biosynthesis and degradation of glycerides in external mycelium of Glomus mosseae

被引:3
作者
Gaspar M. [1 ]
Pollero R. [1 ]
Cabello M. [2 ]
机构
[1] Instituto de Investigaciones Bioquímicas de La Plata (CONICET-UNLP), La Plata (1900)
[2] Instituto de Botánica Spegazzini (UNLP), La Plata (1900)
关键词
Acyl-CoA ligase; Acylglycerol synthetase; External mycelium; Lipase activity; Triacylglycerols;
D O I
10.1007/s005720100130
中图分类号
学科分类号
摘要
The activities of enzymes involved in the glyceride metabolism of Glomus mosseae external mycelium are reported. Total mycelial homogenates were incubated with radiolabeled triolein and palmitic acid for various times under different conditions. The results obtained demonstrate the capacity of G. mosseae external mycelium to synthesize and hydrolyze its own acylglycerides. Neutral lipid biosynthesis progressively increased along with root colonization. Incorporation of [14C]-palmitate was mainly into triacylglycerols and as a minor fraction into diacylglycerols. The activity of palmitoyl-CoA ligase in external mycelium also increased in parallel with mycorrhiza development. The hydrolysis of triacylglycerols was very low at the beginning of colonization and then increased. However, lipase activity was lower than that of acyl-CoA ligase even at late stages of colonization. Thus, triacylglycerol biosynthesis apparently prevails over degradation during G. mosseae mycelium development in the period examined.
引用
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页码:257 / 261
页数:4
相关论文
共 17 条
[1]  
Dole V.P., A relation between non esterified fatty acids in plasma and the metabolism of glucose, J Clin Invest, 35, pp. 350-357, (1956)
[2]  
Folch J., Lees M., Sloane-Stanley G.H., A simple method for the isolation and purification of total lipids from animal tissues, J Biol Chem, 226, pp. 497-509, (1957)
[3]  
Gaspar M.L., Pollero R.J., Cabello M.N., Glomus antarcticum: The lipids and fatty acid composition, Mycotaxon, 60, pp. 129-136, (1994)
[4]  
Gaspar M.L., Pollero R.J., Cabello M.N., Triacylglycerol consumption during spore germination of vesicular-arbuscular mycorrhizal fungi, J Am Oil Chem Soc, 71, pp. 449-452, (1994)
[5]  
Gaspar M.L., Pollero R.J., Cabello M.N., Variations in lipid composition of alfalfa roots during colonization with the arbuscular mycorrhizal fungus Glomus versiforme, Mycologia, 89, pp. 37-42, (1997)
[6]  
Gaspar M.L., Pollero R.J., Cabello M.N., Partial purification and characterization of a lipolytic enzyme from spores of the arbuscular mycorrhizal fungus Glomus versiforme, Mycologia, 89, pp. 610-614, (1997)
[7]  
Gonzalez-Baro M.R., Pollero R., Palmitic acid metabolism in the hepatopancreas of the freshwater shrimp Macrobrachium borelii, Comp Biochem Physiol, 106, pp. 71-75, (1993)
[8]  
Harrier L.A., Wright F., Hookes J.E., Isolation of the 3-phosphoglycerate kinase gene of the arbuscular mycorrhizal fungus Glomus mosseae (Nicol. & Gerd.) Gerdemann & Trappe, Curr Genet, 34, pp. 386-392, (1998)
[9]  
Hewitt E.J., Sand and water culture methods used in the study of plant nutrition, (1952)
[10]  
Lowry O.H., Rosebrough N.J., Farr A.L., Randall R.J., Protein measurement with the Folin phenol reagent, J Biol Chem, 193, pp. 265-275, (1951)