Rumen microorganisms are the origin of many bioactive fatty acids (FA) found in ruminant-derived food products. Differences in plant leaf anatomy and chemical composition between cool- and warm-season pastures may alter rumen microorganisms, potentially enhancing the quantity/profile of bioactive FA available for incorporation into milk. The objective of this study was to identify rumen bacteria and protozoa and their cellular FA when cows grazed a warm-season annual, pearl millet (PM), in comparison to a diverse cool-season pasture (CSP). Individual rumen digesta samples were obtained from five Holstein cows in a repeated measures design with 28-day periods. The treatment sequence was PM, CSP, then PM. Microbial DNA was extracted from rume...
During an in vivo trial with four rumen-fistulated dairy cows, the effect of dietary supplementation...
Microbial biohydrogenation of dietary poly-unsaturated fatty acids (PUFA) to saturated fatty acids (...
Rumen microbiota enable dairy cattle to breakdown fiber into useable energy for milk production. Rum...
<p>Rumen microorganisms are the origin of many bioactive fatty acids (FA) found in ruminant-derived ...
<p>Rumen microorganisms are the origin of many bioactive fatty acids (FA) found in ruminant-derived ...
Milk products are an important component of human diets, with beneficial effects for human health, b...
Despite evidence supporting improved incorporation of beneficial polyunsaturated fatty acids (PUFA) ...
Ruminant products are criticised for their SFA content relative to PUFA, although n-6:n-3 PUFA is de...
Introduction: Ruminal microbiota consists in an extremely biodiverse environment, which includes bac...
International audienceThe experiment reported in this research paper aimed to evaluate the effects o...
Within this study, we investigated whether the polyunsaturated fatty acids (PUFA)-rich nature of rum...
This study investigated the effects of bacterial direct fed microbials (DFM) on ruminal fermentation...
Fat supplementation plays an important role in defining milk fatty acids (FA) composition of ruminan...
During an in vivo trial with four rumen-fistulated dairy cows, the effect of dietary supplementation...
Microbial biohydrogenation of dietary poly-unsaturated fatty acids (PUFA) to saturated fatty acids (...
Rumen microbiota enable dairy cattle to breakdown fiber into useable energy for milk production. Rum...
<p>Rumen microorganisms are the origin of many bioactive fatty acids (FA) found in ruminant-derived ...
<p>Rumen microorganisms are the origin of many bioactive fatty acids (FA) found in ruminant-derived ...
Milk products are an important component of human diets, with beneficial effects for human health, b...
Despite evidence supporting improved incorporation of beneficial polyunsaturated fatty acids (PUFA) ...
Ruminant products are criticised for their SFA content relative to PUFA, although n-6:n-3 PUFA is de...
Introduction: Ruminal microbiota consists in an extremely biodiverse environment, which includes bac...
International audienceThe experiment reported in this research paper aimed to evaluate the effects o...
Within this study, we investigated whether the polyunsaturated fatty acids (PUFA)-rich nature of rum...
This study investigated the effects of bacterial direct fed microbials (DFM) on ruminal fermentation...
Fat supplementation plays an important role in defining milk fatty acids (FA) composition of ruminan...
During an in vivo trial with four rumen-fistulated dairy cows, the effect of dietary supplementation...
Microbial biohydrogenation of dietary poly-unsaturated fatty acids (PUFA) to saturated fatty acids (...
Rumen microbiota enable dairy cattle to breakdown fiber into useable energy for milk production. Rum...