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首页> 外文期刊>Journal of dairy science >Effect of replacing calcium salts of palm oil with camelina seed at 2 dietary ether extract levels on digestion, ruminal fermentation, and nutrient flow in a dual-flow continuous culture system
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Effect of replacing calcium salts of palm oil with camelina seed at 2 dietary ether extract levels on digestion, ruminal fermentation, and nutrient flow in a dual-flow continuous culture system

机译:在双流连续培养系统中,用2种膳食醚提取物水平的山茶籽代替棕榈油钙盐对消化,瘤胃发酵和养分流的影响

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摘要

Camelina is a drought- and salt-tolerant oil seed, which in total ether extract (EE) contains up to 74% polyunsaturated fatty acids. The objective of this study was to assess the effects of replacing calcium salts of palm oil (Megalac, Church & Dwight Co. Inc., Princeton, NJ) with camelina seed (CS) on ruminal fermentation, digestion, and flows of fatty acids (FA) and AA in a dual-flow continuous culture system when supplemented at 5 or 8% dietary EE. Diets were randomly assigned to 8 fermentors in a 2 × 2 factorial arrangement of treatments in a replicated 4 × 4 Latin square design, with four 10-d experimental periods consisting of 7 d for diet adaptation and 3 d for sample collection. Treatments were (1) calcium salts of palm oil supplementation at 5% EE (MEG5); (2) calcium salts of palm oil supplementation at 8% EE (MEG8); (3) 7.7% CS supplementation at 5% EE (CS5); and (4) 17.7% CS supplementation at 8% EE (CS8). Diets contained 55% orchardgrass hay, and fermentors were fed 72 g of dry matter/d. On d 8, 9, and 10 of each period, digesta effluent samples were taken for ruminal NH3, volatile fatty acids, nitrogen metabolism analysis, and long-chain FA and AA flows. Statistical analysis was performed using the MIXED procedure (SAS Institute Inc., Cary, NC). We detected an interaction between FA source and dietary EE level for acetate, where MEG8 had the greatest molar proportion of acetate. Molar proportions of propionate were greater and total volatile fatty acids were lower on CS diets. Supplementation of CS decreased overall ruminal nutrient true digestibility, but dietary EE level did not affect it. Diets containing CS had greater biohydrogenation of 18:2 and 18:3; however, biohydrogenation of 18:1 was greater in MEG diets. Additionally, CS diets had greater ruminal concentrations oftrans-10/11 18:1 andcis-9,trans-11 conjugated linoleic acid. Dietary EE level at 8% negatively affected flows of NH3-N (g/d), nonammonia N, and bacterial N as well as the overall AA outflow. However, treatments had minor effects on individual ruminal AA digestibility. The shift from acetate to propionate observed on diets containing CS may be advantageous from an energetic standpoint. Moreover, CS diets had greater ruminal outflow oftrans-10/11 18:1 andcis-9,trans-11 conjugated linoleic acid than MEG diets, suggesting a better FA profile available for postruminal absorption. However, dietary EE at 8% was deleterious to overall N metabolism and AA outflow, indicating that CS can be fed at 5% EE without compromising N metabolism.
机译:Camelina是一种耐干旱和耐盐的油料种子,在总的乙醚提取物(EE)中含有多达74%的多不饱和脂肪酸。这项研究的目的是评估用山茶花籽(CS)代替棕榈油的钙盐(Megalac,Church&Dwight Co. Inc.,NJ普林斯顿)对瘤胃发酵,消化和脂肪酸流动的影响(补充5或8%饮食EE的双流连续培养系统中的FA)和AA。将饮食随机分配给8个发酵罐,采用2×2因子处理,以重复的4×4拉丁方形设计进行,有四个10 d实验期,其中7 d用于饮食适应,3 d用于样品采集。处理方法是(1)补充5%EE的棕榈油钙盐(MEG5); (2)以8%EE补充棕榈油的钙盐(MEG8); (3)在EE为5%的情况下补充7.7%CS(CS5); (4)在EE为8%的情况下补充了17.7%CS(CS8)。日粮中含有55%的果园干草,发酵罐每天饲喂72克干物质。在每个时期的第8、9和10天,采集消化液废水样品以测定瘤胃NH3,挥发性脂肪酸,氮代谢分析以及长链FA和AA流量。使用MIXED程序(SAS Institute Inc.,北卡罗来纳州卡里)进行统计分析。我们检测到FA来源和饮食中的EE乙酸盐水平之间存在相互作用,其中MEG8的乙酸盐摩尔比例最大。在CS日粮中,丙酸的摩尔比例更大,而总挥发性脂肪酸更低。补充CS会降低瘤胃总营养的真实消化率,但饮食EE水平不会影响它。含CS的日粮具有更高的18:2和18:3的生物氢化作用。然而,MEG日粮中18:1的生物氢化作用更大。另外,CS饮食的反刍动物中反式-10/11 18:1和顺式-9,反式-11共轭亚油酸的瘤胃浓度更高。日粮EE水平为8%对NH3-N(g / d),非氨氮和细菌N的流量以及总体AA流出量产生负面影响。但是,治疗对个体瘤胃AA消化率的影响较小。从能量的观点来看,在含CS的饮食中观察到从乙酸盐到丙酸盐的转变可能是有利的。此外,CS日粮与MEG日粮相比,反式10/11 18:1和顺式9,反式11-反式亚油酸的瘤胃流出量更大,表明可用于瘤胃后吸收的FA分布更好。但是,饮食中的EE对8%的总氮代谢和AA流出都是有害的,表明CS可以在5%EE的情况下饲喂而不会损害N代谢。

著录项

  • 来源
    《Journal of dairy science》 |2018年第6期|5046-5059|共14页
  • 作者单位

    Department of Animal Sciences, University of Florida;

    Department of Animal Sciences, University of Florida;

    Department of Agriculture, Nutrition, and Veterinary Sciences, University of Nevada;

    Department of Animal Sciences, University of Florida;

    Department of Animal Science, Universidade Federal de Viçosa;

    Department of Agriculture, Nutrition, and Veterinary Sciences, University of Nevada;

    Department of Geological Sciences and Engineering, University of Nevada;

    Department of Animal Sciences, University of Florida;

  • 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

    amino acid; biohydrogenation; fatty acid; in vitro fermentation;

    机译:氨基酸;生物加氢;脂肪酸;体外发酵;

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