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Tissue lipid metabolism and hepatic metabolomic profiling in response to supplementation of fermented cottonseed meal in the diets of broiler chickens 被引量:5
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作者 Cun-xi NIE Wen-ju ZHANG +3 位作者 Yong-qiang WANG Yan-feng LIU Wen-xia GE Jian-cheng LIU 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2015年第6期447-455,共9页
This study investigated the effects of fermented cottonseed meal(FCSM) on lipid metabolites, lipid metabolism-related gene expression in liver tissues and abdominal adipose tissues, and hepatic metabolomic profiling... This study investigated the effects of fermented cottonseed meal(FCSM) on lipid metabolites, lipid metabolism-related gene expression in liver tissues and abdominal adipose tissues, and hepatic metabolomic profiling in broiler chickens. One hundred and eighty 21-d-old broiler chickens were randomly divided into three diet groups with six replicates of 10 birds in each group. The three diets consisted of a control diet supplemented with unfermented cottonseed meal, an experimental diet of cottonseed meal fermented by Candida tropicalis, and a second experimental diet of cottonseed meal fermented by C. tropicalis plus Saccharomyces cerevisae. The results showed that FCSM intake significantly decreased the levels of abdominal fat and hepatic triglycerides(P〈0.05 for both). Dietary FCSM supplementation down-regulated the m RNA expression of fatty acid synthase and acetyl Co A carboxylase in liver tissues and the lipoprotein lipase expression in abdominal fat tissues(P〈0.05 for both). FCSM intake resulted in significant metabolic changes of multiple pathways in the liver involving the tricarboxylic acid cycle, synthesis of fatty acids, and the metabolism of glycerolipid and amino acids. These findings indicated that FCSM regulated lipid metabolism by increasing or decreasing the expression of the lipid-related gene and by altering multiple endogenous metabolites. Lipid metabolism regulation is a complex process, this discovery provided new essential information about the effects of FCSM diets in broiler chickens and demonstrated the great potential of nutrimetabolomics in researching complex nutrients added to animal diets. 展开更多
关键词 fermented cottonseed meal Lipid metabolism BROILER Gene expression Metabolomics
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Application of Protein Feed Processed by Microbial Fermentation to Dairy Cow 被引量:9
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作者 Sun Zhe Liu Ying +1 位作者 Pan Hong-bao Gao Xue-jun 《Journal of Northeast Agricultural University(English Edition)》 CAS 2014年第1期39-44,共6页
Methionine (Met) and lysine (Lys) have been reported as the first two limiting amino acids (AA) for maximum milk yield and milk protein production. Supplying these AA may improve microbial protein synthesis and ... Methionine (Met) and lysine (Lys) have been reported as the first two limiting amino acids (AA) for maximum milk yield and milk protein production. Supplying these AA may improve microbial protein synthesis and therefore improve milk production without adding excess N to the environment. This observation utilized fermented soybean meal (SBM), cottonseed meal (CSM), rapeseed meal (RSM) and corn by Bacillus subtilis 168 and Leuconostoc mesenteroides as core feedstuffs to produce special biological protein feed for dairy cow. The results showed that the milk production, milk protein percentage, milk fat percentage and milk DM percentage of test groups in trial period were significantly more than those of the control group (P〈0.01), the results showed that adding fermenting protein feed in dairy cow diets could significantly improve milk yield, milk protein and milk fat content. The economic benefits of actual application were analyzed, the group of 0.5% was the best compared with the other groups. 展开更多
关键词 soybean meal cottonseed meal rapeseed meal corn fermentation Bacillus subtilis 168 Leuconostoc mesenteroides methionine lysine
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