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1.
Milk fatty acid composition is determined by several factors including diet. The milk fatty acid profile of dairy cows is low in polyunsaturated fatty acids, especially those of the n-3 series. Efforts to change and influence fatty acid profile with longer chain polyunsaturated fatty acids have proven challenging. Several barriers prevent easy transfer of dietary polyunsaturated fatty acids to milk fat including rumen biohydrogenation and fatty acid esterification. The potential for cellular uptake and differences in fatty acid incorporation into milk fat might also have an effect, though this has received less research effort. Given physiological impediments to enriching milk fat with polyunsaturated fatty acids, manipulating the genome of the cow might provide a greater increase than diet alone, but this too may be challenged by the physiology of the cow.  相似文献   

2.
Background: In the last years, difficulties occurring in corn cultivation(i.e., groundwater shortages, mycotoxin contamination) have been forcing dairy farmers to consider alternative silages. Some experiments conducted on lactating cows have proven that the total replacement of corn silage with sorghum silage did not reduce milk yield.However, this kind of substitution involves supplementing sorghum-based diets with grains, to compensate for the lower starch content of sorghum silage compared to corn silage. Change of silage type and inclusion of starch sources in the diet would influence rumen fermentations, with possible effects on milk composition(i.e., fatty acid profile) and coagulation properties. A worsening of milk coagulation properties would have a negative economic impact in Italy, where most of the milk produced is processed into cheese.This study was designed to compare milk composition and quality, with emphasis on fatty acid profile and coagulation properties, in dairy cows fed two diets based on corn or sorghum silage.Results: The sorghum diet reduced milk yield(P = 0.043) but not 4% fat corrected milk(P = 0.85). Feeding sorghum silage did not influence milk contents of protein(P = 0.07) and lactose(P = 0.65), and increased fat content(P = 0.024).No differences emerged for milk concentrations of saturated(P = 0.61) and monounsaturated fatty acids(P = 0.50),whereas polyunsaturated fatty acids were lower(P 0.001) for the sorghum diet. Concentrations of n-6(P 0.001) and n-3 fatty acids(P = 0.017) were lower in milk of cows fed the sorghum diet. Milk coagulation properties did not differ between the two diets, except the "a30"(the curd firmness, expressed in mm, 30 min after rennet addition), that was lower(P = 0.042) for the sorghum diet.Conclusions: Feeding a forage sorghum silage, properly supplemented with corn meal, as total replacement of corn silage maintained milk composition and did not influence negatively milk coagulation properties, which have a great economic relevance for the Italian dairy industry. Thus, silages obtained from forage sorghums could have a potential as substitute of corn silages in dairy cow diets.  相似文献   

3.
用气相色谱 质谱联用仪(GC MS)对牦牛乳、黑白花奶牛乳、犏牛乳及牦牛乳制品(奶油、酥油、曲拉、酸奶)中的脂肪酸组成进行了测定。结果表明,牦牛乳中功能性脂肪酸,如共轭亚油酸(CLA)、亚油酸(LA)、α 亚麻酸(ALA)、γ 亚麻酸(GLA)占总脂肪酸的比重均显著高于犏牛乳和黑白花奶牛乳(P<0.05);犏牛乳中ω 6/ω 3 PUFA的比值(1.55)略高于牦牛乳(1.54),差异不显著(P>0.05),但都在最佳膳食平衡比值范围内,黑白花奶牛乳中ω 6/ω 3多不饱和脂肪酸(PUFA)的比值(11.33)超过了推荐最佳比值。加工处理能够改变乳制品脂肪酸的构成,如牦牛乳奶油中检测出原奶中所不含的一种亚油酸(18:2Δ8c,11c)。酥油主要以不饱和脂肪酸(UFA)为主,而曲拉主要以饱和脂肪酸(SFA)为主,牦牛酸奶中没有检测到GLA。  相似文献   

4.
采用在4头泌乳荷斯坦奶牛十二指肠中增量灌注游离亚麻酸(0、100、200、300、400 g/d)的交叉试验设计,观察灌注亚麻酸对乳脂中脂肪酸含量及氧化稳定性的影响。结果发现,随着灌注剂量的增加,乳脂中多不饱和脂肪酸,尤其是α-亚麻酸含量呈显著增加,但同时乳脂中总超氧化物歧化酶活性和总抗氧化能力均有降低趋势,而硫代巴比土酸反应物具有增加趋势。因此,当在奶牛的十二指肠中增量灌注游离亚麻酸会使乳脂中脂肪酸模式得到改变,但同时会影响其氧化稳定性。  相似文献   

5.
The objective of this study was to evaluate the effect of foraging on local scrubby rangeland versus stable feeding with high-protein concentrate as well as the compulsory pasteurization process on goats’ milk and artisan soft cheese quality in terms of chemical composition and fatty acid profile. The results indicated that there were no significant differences in the energy, fat, or ash content of milk and cheese due to feeding; however, a significant influence of feeding on cheese protein and fatty acids in both milk and cheese was detected. Feeding on scrubby rangeland tended to increase the amounts of major polyunsaturated fatty acids in milk and cheese from goats. Pasteurization, which is mandatory in Mexico, did not alter the fatty acid concentrations in milk or cheese. Small goat-keepers using rangeland resources might claim better economical returns for products recognized as healthier. Further investigations to assure ecosystem sustainability of shrubby rangeland joined with economical evaluations and best animal management to avoid deleterious effects are recommended.  相似文献   

6.
本文旨在研究饲粮中添加黄花蒿乙醇提取物对奶牛产奶性能及乳脂中共轭亚油酸(CLA)含量的影响。试验选取体重(600±29)kg、胎次2~3胎、泌乳期(158±3)d及泌乳量(22.8±1.8)kg/d的泌乳期荷斯坦奶牛15头,采用完全随机区组设计分为3组,每组5头,进行为期40 d的饲养试验,其中1~9 d为预试期,10~40 d为正试期。对照组饲喂基础饲粮,试验1组和试验2组分别在基础饲粮中添加96和160 g/(d·头)的黄花蒿乙醇提取物。结果表明:整个试验期间,2个试验组的产奶量(第24、31和40天)、乳脂率、乳脂产量、乳蛋白率、乳蛋白产量、非脂固形物含量以及乳脂中的饱和脂肪酸、单不饱和脂肪酸、多不饱和脂肪酸、短链脂肪酸、中链脂肪酸和长链脂肪酸含量与对照组相比均无显著差异(P0.05);2个试验组的乳脂中CLA含量分别比对照组提高了30.7%和38.6%,其中试验2组与对照组差异显著(P0.05)。由此得出,饲粮中添加适量的黄花蒿乙醇提取物对奶牛产奶性能没有明显影响,但可以提高其乳脂中CLA含量,从而优化乳脂中脂肪酸的比例。  相似文献   

7.
The objective of this study was to evaluate the effect of vitamin E on the fat content and fatty acid profile of grazing dairy cows supplemented with microencapsulated conjugated linoleic acid. Eight New Zealand Holstein cows in a rotational grazing system were used, in a crossover design, randomly assigned to four treatments: control (base diet with microencapsulated conjugated linoleic acid) and three levels of vitamin E (control with 4,000; 8,000; and 12,000 IU/cow per day). All the cows received a supplement apportioning 5 g of cis-9, trans-11, and 5 g of trans-10, cis-12 of conjugated linoleic acid. Moreover, they each received 4-kg dry matter (DM) concentrate and 3.2-kg DM corn silage every day. There were no differences in dry matter intake, milk production, milk composition (fat, protein, and lactose), or fatty acid profile as an effect of vitamin E, and fat content remained under 3 % in all treatments. Therefore, under the conditions that this experiment was carried out, high concentrations of vitamin E in the diet of grazing dairy cows do not inhibit milk fat depression associated with conjugated linoleic acid. It also has no effect on the fatty acid profile of the milk.  相似文献   

8.
中国是世界上拥有牦牛种群和数量最多的国家,对某些特定人群而言,牦牛乳的生物学特点意义重大.与普通牛乳、羊乳和人乳的各营养素含量相比,牦牛乳的蛋白质、脂肪、乳糖、矿物质和维生素含量均高于普通牛羊乳,必需氨基酸、必需脂肪酸、乳糖及矿物质含量更接近人乳.另外,牦牛乳含有的二十碳五烯酸和二十二碳六烯酸等功能性脂肪酸,是普通牛羊乳所不具有的.在安全性上,牦牛乳特有的蛋白质比普通牛乳蛋白质更不易引起过敏且容易消化吸收,所含共轭亚油酸的安全性评价实验与人群研究表明其无任何毒副作用.牦牛乳以其特有的营养性和安全性,可望为我国婴儿配方奶粉领域增加新品种.  相似文献   

9.
Feeding unsaturated oils to lactating dairy cows impair ruminal biohydrogenation (BH) of unsaturated fatty acids (USFA) and increase ruminal outflow of BH intermediates such as trans‐10, cis‐12 CLA that are considered to be potent inhibitors of milk fat synthesis. Supplementing lactating dairy cow’s rations containing plant origin oils with monensin and/or vitamin E may minimise the formation of trans‐10 isomers in the rumen, thereby preventing milk fat depression. Therefore, this study was conducted to evaluate the effects of monensin and vitamin E supplementation in the diets of lactating dairy cows containing whole cottonseed, as the main source of FA on feed intake, milk production and composition, milk fatty acid profile, efficiency of nitrogen (N) utilisation, efficiency of net energy (NE) utilisation and nutrients digestibilities. Four multiparous Holstein lactating dairy cows (86 ± 41 days in milk) were assigned to a balanced 4 × 4 Latin square design. Each experimental period lasted 21 days with a 14 days of treatment adaptation and a 7 days of data collection. The control diet was a total mixed ration (TMR) consisted of 430 g/kg forage and 570 g/kg of a concentrate mixture on dry matter (DM) basis. Cows were randomly assigned to one of the four dietary treatments including control diet (C), control diet supplemented with 150 mg of vitamin E/kg of DM (E), control diet supplemented with 24 mg of monensin/kg of DM (M) and control diet supplemented with 150 mg of vitamin E and 24 mg of monensin/kg of DM (EM). Dry matter intake (DMI) ranged from 19.1 to 19.5 kg/d and was similar among the dietary treatments. Dietary supplementation with vitamin E or monensin had no effect on milk production, milk fat, protein and lactose concentrations, efficiency of utilisation of nitrogen and net energy for lactation (NEL). Digestibility of DM, organic matter (OM), crude protein (CP) and ether extract (EE) was not affected by the dietary treatments. Digestibility of neutral detergent fibre (NDF) was higher in cows fed with the M and EM diets in relation to those fed the C and E diets. The concentrations of C4:0, C6:0, C8:0, C10:0, C12:0, C14:0, C15:0, trans‐10‐16:1, cis‐9‐16:1, 17:0, 18:0, trans‐11‐18:1, cis‐9‐18:1, cis‐9, trans‐11 conjugated linoleic acid (CLA), trans‐10, cis‐12 CLA, and 18:3n‐3 FA in milk fat were not affected by the dietary supplementations. While feeding the M diet tended to decrease milk fat concentration of C16:0, the milk fat concentration of C18:2n‐6 FA tended to be increased. Dietary supplementation with vitamin E or monensin had no effect on milk fat concentrations of saturated, unsaturated, monounsaturated, polyunsaturated, short chain and long chain FA, but feeding the M diet numerically decreased milk fat concentration of medium chain fatty acids (MCFA). The results showed that vitamin E and/or monensin supplementations did not improve milk fat content and did not minimise the formation of trans‐10 FA isomers in the rumen when whole cottonseed was included in the diet as the main source of fatty acids.  相似文献   

10.
Eight cows were used to evaluate the effects of supplementation of soy sauce oil (SO) or Ca salts of fatty acids (FA) on rumen fermentation and milk production. The control diet (CO) consisted mainly of hay, corn silage and a concentrate. In the experimental diets, 400 g/day per cow of SO or FA (soybean oil and rapeseed oil) was supplemented to the CO diet. Experimental period for the three treatments was 14 days, and milk samples were taken during the last 2 days and rumen sample was taken on the last day. Dry matter intake was not affected by the treatments. The number of rumen protozoa at 0 h increased by SO and FA diets. Total volatile fatty acids at 2 h after feeding of SO diet was decreased compared to CO. The milk composition yield did not differ among treatments, although the percentages of fat and protein were decreased by SO and FA diets. The proportions of C8–C16 fatty acids in milk fat decreased, and those of C18 increased by SO and FA diets. The proportion of cis‐9, trans‐11 conjugated linoleic acid in milk fat by SO and FA diets increased by 120% and 135%, respectively. In spite of the slight suppression of rumen fermentation by SO diet, negative effects on feed intake and milk production were not detected.  相似文献   

11.
肉、蛋、奶等动物产品和肉、奶制品是单不饱和脂肪酸(MUFA)和多不饱和脂肪酸(PUFA)的重要来源.因此,提高肉及肉制品、蛋、奶及奶制品中不饱和脂肪酸(UFA)含量有助于提高全民健康水平和生活质量.本文主要对目前富含PUFA的动物产品质量及影响动物产品中PUFA成分和含量的饲粮、动物性别和年龄及基因类型等因素做一简要综述,以期为在生产实践中开发相关技术和产品提供理论参考依据.  相似文献   

12.
肉、蛋、奶等动物产品和肉、奶制品是单不饱和脂肪酸(MUFA)和多不饱和脂肪酸(PUFA)的重要来源。因此,提高肉及肉制品、蛋、奶及奶制品中不饱和脂肪酸含量有助于提高全民健康水平和生活质量。主要对目前富含不饱和脂肪酸的动物产品质量及影响动物产品中不饱和脂肪酸成分和含量的饲粮、动物性别和年龄以及基因类型等因素作一简要综述,以期为在生产实践中开发相关技术和产品提供理论参考依据。  相似文献   

13.
Since 1950, links between intake of saturated fatty acids and heart disease have led to recommendations to limit consumption of saturated fatty acid-rich foods, including beef. Over this time, changes in food consumption patterns in several countries including Canada and the USA have not led to improvements in health. Instead, the incidence of obesity, type II diabetes and associated diseases have reached epidemic proportions owing in part to replacement of dietary fat with refined carbohydrates. Despite the content of saturated fatty acids in beef, it is also rich in heart healthy cis-monounsaturated fatty acids, and can be an important source of long-chain omega-3 (n-3) fatty acids in populations where little or no oily fish is consumed. Beef also contains polyunsaturated fatty acid biohydrogenation products, including vaccenic and rumenic acids, which have been shown to have anticarcinogenic and hypolipidemic properties in cell culture and animal models. Beef can be enriched with these beneficial fatty acids through manipulation of beef cattle diets, which is now more important than ever because of increasing public understanding of the relationships between diet and health. The present review examines recommendations for beef in human diets, the need to recognize the complex nature of beef fat, how cattle diets and management can alter the fatty acid composition of beef, and to what extent content claims are currently possible for beef fatty acids.  相似文献   

14.
Since 1950, links between intake of saturated fatty acids and heart disease have led to recommendations to limit consumption of saturated fatty acid-rich foods, including beef. Over this time, changes in food consumption patterns in several countries including Canada and the USA have not led to improvements in health. Instead, the incidence of obesity, type II diabetes and associated diseases have reached epidemic proportions owing in part to replacement of dietary fat with refined carbohydrates. Despite the content of saturated fatty acids in beef, it is also rich in heart healthy cis-monounsaturated fatty acids, and can be an important source of long-chain omega-3(n-3) fatty acids in populations where little or no oily fish is consumed. Beef also contains polyunsaturated fatty acid biohydrogenation products,including vaccenic and rumenic acids, which have been shown to have anticarcinogenic and hypolipidemic properties in cell culture and animal models. Beef can be enriched with these beneficial fatty acids through manipulation of beef cattle diets, which is now more important than ever because of increasing public understanding of the relationships between diet and health. The present review examines recommendations for beef in human diets, the need to recognize the complex nature of beef fat, how cattle diets and management can alter the fatty acid composition of beef, and to what extent content claims are currently possible for beef fatty acids.  相似文献   

15.
脂肪酸是猪饲料中的一种重要营养成分,包括短链脂肪酸、中链脂肪酸和多不饱和脂肪酸等多种类型,它们除了提供能量外还对猪的肠道微生态、机体代谢、免疫机能、繁殖性能等具有调节作用。文章简述了不同饲料原料中脂肪酸的含量、脂肪酸的主要生物学功能及其在养猪生产中的应用效果,以期为养猪生产中合理应用油脂和脂肪酸提供依据。  相似文献   

16.
Fatty acids are important compositions of nutrient,including short-chain fatty acids,medium-chain fatty acids and polyunsaturated fatty acids.They play a role in optimizing intestinal microflora,modulating nutrient metabolism,improving immunology and reproductive performance of pigs except for providing energy.This paper reviewed fatty acid profile of feed ingredients,basic biological functions of different variety of fatty acids and its application in swine industry to provide evidences for better using lipids and fatty acid in pig diet.  相似文献   

17.
肉、蛋、奶等动物产品和肉、奶制品是单不饱和脂肪酸(MUFA)和多不饱和脂肪酸(PUFA)的重要来源。因此,提高肉及肉制品、蛋、奶及奶制品中不饱和脂肪酸含量有助于提高全民健康水平和生活质量。主要对目前富含不饱和脂肪酸的动物产品质量及影响动物产品中不饱和脂肪酸成分和含量的饲粮、动物性别和年龄以及基因类型等因素作一简要综述,以期为在生产实践中开发相关技术和产品提供理论参考依据。  相似文献   

18.
试验评估不同水平柑橘渣对奶牛泌乳性能、养分消化及乳成分的影响.将32头泌乳性能一致的奶牛随机分为4个组,每组4个重复,每个重复2头.对照组饲喂粗脂肪水平为3%的日粮,处理组分别饲喂粗脂肪水平为5.5%的日粮同时添加0 (T1)、5%(T2)和10% (T3)柑橘渣.结果 显示,与对照组相比,处理组奶牛的粗脂肪摄入量、干...  相似文献   

19.
The present review has been focused largely on the sex type differences in beef quality among heifers, cows, steers and bulls in various feeding environments. Genetic groups, feeding systems and gender are the major factors that change carcass characteristics and fatty acid profiles of cattle. Studies identified that heifer beef has super characteristics in eating quality and a better healthy composition in fatty acids than steer, cow and bull. Diet influences the variation of fatty acid profile; particularly the level of polyunsaturated fatty acids (PUFA) interacts with breed and sex. Animals finished in pasture systems were reported to show better ratios of PUFA/ saturated fatty acids and n‐6/n‐3. Carcasses of roughage‐fed beef are lighter and have less marbling and lower quality grades but have higher cutability than carcasses of grain‐fed bulls. Heifers and cows are reported to deposit more fat than steers and bulls. Among males, lower production of testosterone by steers favors more fat thickness compared with bulls. Marbling greatly varies among cattle belonging to different sexes, and particularly, females have genetic makeup that efficiently controls deposition. The current review identified that heifers can be a premium beef brand, while steer beef currently take a large part of market share across the world.  相似文献   

20.
反式脂肪酸降低乳脂合成的机理   总被引:3,自引:0,他引:3  
乳中的反式脂肪酸直接来源于日粮脂肪或由瘤胃微生物氢化生成,本文重点介绍了反10-油酸和反10,顺12-共轭亚油酸两种不同反式脂肪酸对乳脂合成的影响,讨论了反式脂肪酸影响乳脂合成的机理,可能是反式脂肪酸通过抑制乳腺中脂肪酸合成的关键酶乙酰辅酶A羧化酶和脂肪酸合成酶的活性,进而导致乳脂合成的减少。  相似文献   

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