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monogalactosyldiacylglycerol/cartof

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ArticoleStudii cliniceBrevete
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Purification and properties of a lipid acyl-hydrolase from potato tubers.

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1. A pure lipid acyl-hydrolase was prepared from potato tubers by acetone precipitation, Sephadex G-100 and DEAE-Sephadex A-50 column chromatography, and by electrofocusing. 2. The purified enzyme was an acidic protein of pI 5.0 and molecular weight of about 70 000. Km values were 0.38 mM for

Changes in lipid molecular species and sterols of microsomal membranes during aging of potato (Solanum tuberosum L.) seed-tubers.

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Changes in sterols and the molecular species composition of polar lipids from microsomal membranes were characterized as a prerequisite to determining how lipid chemistry affects membrane susceptibility to peroxidation during aging of potato tubers. Polar lipid content of the microsomal fraction

Purification and properties of a lipolytic acyl-hydrolase from potato leaves.

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A lipolytic acyl-hydrolase was purified 520-fold from an homogenate of potato leaves (Solanum tuberosum L. cv. Benimaru). The purified enzyme showed a single protein band on polyacrylamide gel electrophoresis. The enzyme had an isoelectric point of 4.6 and a molecular weight of about 110,000. It had

Lipid and oxylipin profiles during aging and sprout development in potato tubers (Solanum tuberosum L.).

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Potato tubers (Solanum tuberosum L. cv Bintje) were stored at 20 degrees C for 210 days without desprouting to study the lipoxygenase pathway during aging. After 15 days of storage, potato tubers sprouted, while after 45-60 days, apical dominance was lost and multiple sprouts developed. Analysis of

Lipid metabolism during aging of high-alpha-linolenate-phenotype potato tubers.

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Previous studies demonstrated that high levels of alpha-linolenate in cell membranes of potato tubers (achieved by overexpressing fatty acid desaturases) enhances lipid peroxidation, oxidative stress, and tuber metabolic rate, effectively accelerating the physiological age of tubers. This study

A patatin-like protein with galactolipase activity is induced by drought stress in Vigna unguiculata leaves.

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This paper reports the cloning of a cDNA (Vupat1) expressed in Vigna unguiculata leaves coding for a protein with 48% sequence homology to patatin, the major protein from potato tuber which has lipolytic acylhydrolase activity. Two cultivars differing in drought tolerance were examined in

Effects of lipolytic enzymes on the photochemical activities of spinach chloroplasts.

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1. Spinach class II chloroplasts were treated with purified potato lipolytic acyl-hydrolase and venom phospholipase A2, and their lipid degradations and the effects on the photochemical activities were followed. 2. Potato lipolytic enzyme hydrolyzed monogalactosyldiacylglycerol at a faster rate than
The lipase from Rhizopus arrhizus and the lipolytic acyl hydrolase from potato tubers have been used to determine the transmembrane distribution of monogalactosyldiacylglycerol (MGDG) and digalactosyldiacylglycerol (DGDG) in prothylakoids and thylakoids from oat (Avena sativa). Both galactolipids
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