Lipid Metabolism in the Rumen
Метаболизм липидов в рубце
1993-12-01
SCID: 54.1/gkuyb7ha
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fatty acid antimicrobial effectslipolytic and hydrogenation ratesmicrobial biohydrogenationruminal fermentationruminal lipid metabolism
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Abstract (AI)
Recent advances in ruminal lipid metabolism have focused primarily on manipulation of physicochemical events in the rumen aimed at two practical outcomes: 1) control of antimicrobial effects of fatty acids so that additional fat can be fed to ruminants without disruption of ruminal fermentation and digestion and 2) regulation of microbial biohydrogenation to alter the absorption of selected fatty acids that might enhance performance or reduce saturation of meat and milk. Properties of lipids that determine their antimicrobial effects in the rumen include type of functional group, degree of unsaturation, formation of carboxylate salts, and physical association of lipids with surfaces of feed particles and microbes. The mechanism of how lipids interfere with ruminal fermentation is a complex model involving partitioning of lipid into the microbial cell membrane, potency of the lipid to disrupt membrane and cellular function, physical attachment of microbial cells to plant surfaces, and expression and activity of microbial hydrolytic enzymes. Lipolytic and hydrogenation rates vary with forage quality (stage of maturity and N content), surface area of feed particles in the rumen, and structural modifications of the lipid molecule that inhibit attack by bacterial isomerases.
Key Findings
1
Lipid antimicrobial effects depend on functional-group type, unsaturation degree, carboxylate-salt formation, and physical association with feed-particle and microbial surfaces.
2
Lipid interference with ruminal fermentation involves membrane partitioning, disruption of microbial membrane and cellular function, altered plant-surface attachment, and changes in hydrolytic-enzyme activity.
3
Recent ruminal lipid research targets increased dietary fat delivery without disrupting fermentation or digestion, and altered fatty-acid absorption through regulated microbial biohydrogenation.
4
Ruminal lipolysis and biohydrogenation rates vary with forage maturity and nitrogen content, feed-particle surface area, and structural lipid modifications that inhibit bacterial isomerases.
Research Object
Ruminal lipid metabolism and the physicochemical interactions of dietary lipids with rumen microbes and feed particles
Research Subject
Antimicrobial effects of fatty acids, microbial biohydrogenation, and the effects of lipid structure, feed properties, and microbial interactions on ruminal fermentation, digestion, and fatty-acid absorption
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1993-12-01
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