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cotyledon/triglyceride

Линкът е запазен в клипборда
СтатииКлинични изследванияПатенти
11 резултата

Involvement of phospholipids in triglyceride biosynthesis by developing soybean cotyledons.

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The incorporation of phospholipids specifically labeled with glycerol-2(3)H and acyl-(14)C by whole cell tissues of developing soybean cotyledons (Glycine max L.) reveals that phosphatidylinositol, phosphatidylcholine, phosphatidylethanolamine, N-acylphosphatidylethanolamine, and phosphatidic acid

Properties of a membrane-bound triglyceride lipase of rapeseed (Brassica napus L.) cotyledons.

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The properties of the alkaline lipase activity (EC 3.1.1.3) that was recovered almost completely from a microsomal membrane fraction of 4-d-old rapeseed (Brassica napus L.) cotyledons were studied employing a titrimetric test procedure. The apparent KM was 6.5 mmol l(-1), with emulgated sunflower

A lipoxygenase is the main lipid body protein in cucumber and soybean cotyledons during the stage of triglyceride mobilization.

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The 90-kDa lipid body protein characterized earlier by its high expression during the stage of fat degradation was identified as a form of lipoxygenase. This organelle form was compared with lipoxygenase species purified from the cytosol. It is further shown that the antibodies raised against the

Gluconeogenesis from storage wax in the cotyledons of jojoba seedlings.

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The cotyledons of jojoba (Simmondsia chinensis) seeds contained 50 to 60% of their weight as intracellular wax esters. During germination there was a gradual decrease in the wax content with a concomitant rise in soluble carbohydrates, suggesting that the wax played the role of a food reserve. Thin

Soy cotyledon fiber products reduce plasma lipids.

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This study was designed to test the hypocholesterolemic effect of soy cotyledon fiber in the diet as ready-to-eat cereal and white bread, in free-living subjects having mildly elevated, fasting plasma total cholesterol levels. Twenty subjects completed a 15-week double-blind crossover design

Studies on seeds. IV. Lipid composition of bean cotyledon vesicles.

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Lipid content has been determined for two types of lipid-rich vesicles isolated from bush bean cotyledon at 24 hr of germination. The larger, nonassociating vesicles are four to six times richer in triglyceride than the smaller vesicles which associate strongly among themselves, as well as with

Lipid molecular species composition in developing soybean cotyledons.

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The fatty acid composition of triglyceride and phospholipids in developing soybean cotyledons (Glycine max L., var. "Harosoy 63") was analyzed at several stages of growth between 30 and 70 days after flowering. Changes observed in fatty acid composition within each lipid class were related to the

Studies on the metabolism of lipid molecular species in immature soybean cotyledons.

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Metabolism of lipid molecular species in soybean cotyledons (Glycine max [L.] Merr. var. "Harosoy 63") was determined from incorporation studies with radioactive acetate and glycerol. Lipid synthetic activity was highest in immature cotyledons at 30 days after flowering. Distinct differences in

Studies on lipid synthesis and degradation in developing soybean cotyledons.

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The metabolic activity of individual lipid classes found in developing soybean cotyledons (Glycine max.) is estimated by determining the degradation rate of the compound under given conditions. Pulse-labeling and dual substrate labeling are used to evaluate this parameter. These studies indicate

Development and intracellular localization of lipase activity in rapessed (Brassica napus L.) cotyledons.

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In homogenates of resting rapeseeds no lipase activity (glycerolester hydrolase, EC 3.1.1.3) could be detected using a titrimetric assay procedure. Following a 30-h lag-phase after imbibition, lipase activity increased sharply, reaching its maximum at day 4 after sowing. Simultaneously triglyceride

Upregulation of growth signaling and nutrient transporters in cotyledons of early to mid-gestational nutrient restricted ewes.

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Multiparous ewes received 100% (control, C, n = 13) or 50% (nutrient restricted, NR, n = 14) of NRC dietary requirements from d28-d78 of gestation. On d78, 5 C and 6 NR ewes were necropsied. The remaining 8 C and 8 NR ewes were fed to 100% of NRC from d78-d135 and necropsied. Maternal blood was
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Най-пълната база данни за лечебни билки, подкрепена от науката

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