首页> 外文期刊>Journal of dairy science >Rumen biohydrogenation-derived fatty acids in milk fat from grazing dairy cows supplemented with rapeseed, sunflower, or linseed oils
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Rumen biohydrogenation-derived fatty acids in milk fat from grazing dairy cows supplemented with rapeseed, sunflower, or linseed oils

机译:放牧的奶牛补充了菜籽油,向日葵油或亚麻子油后,牛奶中的瘤胃生物氢化衍生脂肪酸

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摘要

The effects of supplementation with rapeseed, sunflower, and linseed oils (0.5 kg/d; good sources of oleic, linoleic, and linolenic acids, respectively) on milk responses and milk fat fatty acid (FA) profile, with special emphasis on rumen-derived biohydrogenation intermediates (BI), were evaluated in a replicated 4× 4 Latin square study using 16 grazing dairy cows. The dietary treatments were 1) control diet: 20-h access to grazing pasture supplemented with 5 kg/d of corn-based concentrate mixture (96% corn; CC); 2) RO diet: 20-h access to grazing supplemented with 4.5 kg/d of CC and 0.5 kg of rapeseed oil; 3) SO diet: 20-h access to grazing supplemented with 4.5 kg/d of CC and 0.5 kg of sunflower oil; and 4) LO diet: 20-h access to grazing supplemented with 4.5 kg/d of CC and 0.5 kg of linseed oil. Milk fatty acids were converted to methyl esters and analyzed by gas-liquid chromatography and silver-ion HPLC. Dietary treatments had no effect on milk production or on milk protein content and milk protein production. Supplementation with rapeseed and sunflower oils lowered milk fat content and milk fat production, but linseed oil had no effect. Inclusion of dietary vegetable oils promoted lower concentrations of short-chain (including 4:0) and medium-chain FA (including odd- and branched-chain FA) and 18:3n-3, and higher concentrations of C_(18) FA (including stearic and oleic acids). The BI concentration was higher with the dietary inclusion of vegetable oils, although the magnitude of the concentration and its pattern differed between oils. The RO treatment resulted in moderate increases in BI, including trans 18:1 isomers and 18:2rntrans-7,cis-9, but failed to increase 18:1 trans-11 and 18:2 cis-9,trans-11. Sunflower oil supplementation resulted in the highest concentrations of the 18:1 trans-10, 18:1 cis-12, and 18:2 trans-10, trans-12 isomers. Concentrations of 18:1 trans-11 and 18:2 cis-9, trans-11 were higher than with the control and RO treatments but were similar to the LO treatment. Concentration of BI in milk fat was maximal with LO, having the highest concentrations of some 18:1 isomers (i.e., trans-13/14, irans-15, cis-15, cis-16), most of the nonconjugated 18:2 isomers (i.e., trans-11,trans-15, trans-11,cis-15, cis-9,cis-15, and cis-12,cis-15), and conjugated 18:2 isomers (i.e., trans-11,cis-13, cis-12,trans-14, trans-11,trans-13, trans-12,trans-14, and trans-9,trans-11), and all conjugated 18:3 isomers. The LO treatment induced the highest amount and diversity of BI without decreasing milk fat concentration, as the RO and SO treatments had, suggesting that the BI associated with 18:3n-3 intake may not be the major contributors to inhibition of mammary milk fat synthesis.
机译:补充菜籽油,向日葵油和亚麻籽油(0.5千克/天;分别是油酸,亚油酸和亚麻酸的良好来源)对牛奶反应和牛奶脂肪脂肪酸(FA)谱的影响,特别是瘤胃在重复的4×4拉丁方研究中,使用16头放牧的奶牛,对衍生的生物氢化中间体(BI)进行了评估。饮食处理为1)对照饮食:在放牧牧场20小时内补充5 kg / d的玉米浓缩汁(96%玉米; CC); 2)反渗透饮食:放牧20小时,补充4.5千克/天的CC和0.5千克菜籽油; 3)SO饮食:放牧20小时,补充4.5千克/天的CC和0.5千克葵花籽油;和4)低脂饮食:放牧20小时,补充4.5公斤/天的CC和0.5公斤的亚麻子油。牛奶脂肪酸转化为甲酯,并通过气液色谱和银离子HPLC进行分析。饮食处理对牛奶生产或牛奶蛋白质含量和牛奶蛋白质生产没有影响。菜籽油和葵花籽油的补充降低了乳脂含量和乳脂产量,但是亚麻籽油没有作用。膳食植物油的加入促进了短链(包括4:0)和中链FA(包括奇数和支链FA)和18:3n-3的较低浓度,以及C_(18)FA(包括硬脂酸和油酸)。饮食中添加植物油时,BI浓度较高,尽管不同油中的浓度幅度及其模式有所不同。 RO处理导致BI适度增加,包括反式18:1异构体和18:2rntrans-7,cis-9,但未能增加18:1反式11和18:2顺式9,trans-11。葵花籽油的补充导致最高浓度的18:1反式10、18:1顺式12和18:2反式10,反式12异构体。 18:1反式11和18:2顺式9,反式11的浓度高于对照和RO处理,但与LO处理相似。乳脂中的BI浓度最高,LO最高,约18:1异构体(即,trans-13 / 14,irans-15,cis-15,cis-16)的最高浓度,大多数非结合的18:2异构体(例如,trans-11,trans-15,trans-11,cis-15,cis-9,cis-15和cis-12,cis-15)和共轭的18:2异构体(例如,trans-11 (顺式13,顺式12,反式14,反式11,反式13,反式12,反式14和反式9,反式11),以及所有共轭的18:3异构体。如RO和SO处理一样,LO处理诱导了BI的最高含量和多样性,却没有降低乳脂浓度,这表明与18:3n-3摄入量相关的BI可能不是抑制乳汁乳脂合成的主要因素。 。

著录项

  • 来源
    《Journal of dairy science》 |2009年第9期|4530-4540|共11页
  • 作者单位

    Centra de Investigacao e Tecnologia Agraria dos Acores (CITA-A), Departamento de Ciencias Agrarias, Universidade dos Acores, 9701-851 Angra do Heroismo, Portugal;

    Unidade de Producao Animal, Instituto Nacional de Recursos Biologicos, Fonte Boa, 2005-048 Vale de Santarem, Portugal Rede de Quimica e Tecnologia (REQUIMTE), Instituto de Ciencias Biomedicas de Abel Salazar (ICBAS), Universidade do Porto, Campus Agrario de Vairao, Rua Padre Armando Quintas, 4485-661 Vairao VC, Portugal;

    Centra de Investigacao e Tecnologia Agraria dos Acores (CITA-A), Departamento de Ciencias Agrarias, Universidade dos Acores, 9701-851 Angra do Heroismo, Portugal;

    Centra de Investigacao e Tecnologia Agraria dos Acores (CITA-A), Departamento de Ciencias Agrarias, Universidade dos Acores, 9701-851 Angra do Heroismo, Portugal;

    Centro de Investigacao Interdisciplinar em Sanidade Animal (CIISA), Faculdade de Medicina Veterinaria, TU Lisbon, Polo Universitario do Alto da Ajuda, 1300-477 Lisboa, Portugal;

    Centro de Investigacao Interdisciplinar em Sanidade Animal (CIISA), Faculdade de Medicina Veterinaria, TU Lisbon, Polo Universitario do Alto da Ajuda, 1300-477 Lisboa, Portugal;

    REQUIMTE, Seccao Autonoma de Engenharia das Ciencias Agrarias (SAECA), Faculdade de Ciencias, Universidade do Porto, Campus Agrario de Vairao, Rua Padre Armando Quintas, 4485-661 Vairao VC, Portugal;

    Rede de Quimica e Tecnologia (REQUIMTE), Instituto de Ciencias Biomedicas de Abel Salazar (ICBAS), Universidade do Porto, Campus Agrario de Vairao, Rua Padre Armando Quintas, 4485-661 Vairao VC, Portugal;

    Unidade de Producao Animal, Instituto Nacional de Recursos Biologicos, Fonte Boa, 2005-048 Vale de Santarem, Portugal Centro de Investigacao Interdisciplinar em Sanidade Animal (CIISA), Faculdade de Medicina Veterinaria, TU Lisbon, Polo Universitario do Alto da Ajuda, 1300-477 Lisboa, Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dairy cow; grazing; milk fatty acid; vegetable oil;

    机译:奶牛;放牧;牛奶脂肪酸植物油;
  • 入库时间 2022-08-17 23:25:03

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