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Effects of varying forage particle size and fermentable carbohydrates on feed sorting, ruminal fermentation, and milk and component yields of dairy cows

机译:饲草颗粒大小和可发酵碳水化合物的变化对奶牛的饲料分选,瘤胃发酵以及牛奶和成分产量的影响

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摘要

Ration sorting is thought to affect ruminal fermentation in such a manner that milk yield milk and components are often decreased. However, the influence of ruminally degradable starch on ration sorting has not been studied. Therefore, the objective of this experiment was to evaluate the interactions between forage particle size (FPS) and ruminally fermentable carbohydrates (RFC) for dry matter intake (DMI), ration sorting, ruminal fermentation, chewing activity, and milk yield and components. In this study, 12 (8 ruminally cannulated) multiparous, lactating Holstein cows were fed a total mixed ration that varied in FPS and RFC. Two lengths of corn silage were used to alter FPS and 2 grind sizes of corn grain were used to alter RFC. It was determined that increasing RFC increased ruminating time and did not affect eating time, whereas increasing FPS increased eating time and did not affect ruminating time. Ruminal fermentation did not differ by altering either FPS or RFC. However, increasing FPS tended to increase mean and maximum ruminal pH and increasing RFC tended to decrease minimum ruminal pH. Particle size distribution became more diverse and neutral detergent fiber content of refusals increased over time, whereas starch content decreased, indicating that cows were sorting against physically effective neutral detergent fiber and for RFC. Selection indices determined that virtually no interactions occurred between FPS and RFC and that despite significant sorting throughout the day, by 24 h after feeding cows had consumed a ration very similar to what was offered. This theory was reinforced by particle fraction intakes that very closely resembled the proportions of particle fractions in the offered total mixed ration. An interaction between FPS and RFC was observed for DMI, as DMI decreased with increasing FPS when the diet included low RFC and did not change when the diet included high RFC. Dry matter intake increased with RFC for long diets and did not change with RFC on short diets. Increasing RFC was found to increase milk yield, milk protein content and yield, and lactose content and yield but decrease milk fat content. Increasing FPS did not have as great an effect on milk production as RFC. This study found no significant interaction between FPS and RFC for ration sorting, although an interaction between FPS and RFC for DMI was observed. Neither FPS nor RFC affected ruminal fermentation, whereas RFC had a greater influence on milk yield and components than FPS.
机译:定量分选被认为以这样的方式影响瘤胃发酵,使得产奶量和成分经常减少。但是,尚未研究反刍动物可降解淀粉对定量配比的影响。因此,本实验的目的是评估饲草颗粒大小(FPS)与反刍动物可发酵碳水化合物(RFC)之间的相互作用,以获取干物质摄入(DMI),定量配比,瘤胃发酵,咀嚼活性以及牛奶产量和成分。在这项研究中,对12头(8头有瘤胃插管)多头,泌乳的荷斯坦奶牛饲喂的总混合日粮的FPS和RFC不同。两种长度的玉米青贮饲料用于改变FPS,而两种谷物粒度的玉米用于改变RFC。已确定增加RFC会增加反刍时间,并且不影响进餐时间,而增加FPS会增加进食时间,并且不影响反刍时间。通过改变FPS或RFC,瘤胃发酵没有差异。但是,增加FPS会增加平均和最大瘤胃pH值,而增加RFC会降低最小瘤胃pH值。粒度分布变得更加多样化,拒绝的中性洗涤剂纤维含量随时间增加,而淀粉含量下降,这表明母牛正在针对物理有效的中性洗涤剂纤维和RFC进行分类。选择指数确定FPS和RFC之间几乎没有相互作用,尽管全天进行了大量分选,但在喂牛后24小时内,牛的日粮与所提供的日粮非常相似。颗粒分数的摄入与所提供的总混合比例中颗粒分数的比例非常相似,从而加强了这一理论。对于DMI,观察到FPS和RFC之间的相互作用,因为当饮食中添加低RFC时DMI随着FPS的增加而降低,而当饮食中包含高RFC时DMI则没有变化。长期饮食中,干物质摄入量随RFC的增加而增加,而短期饮食中RFC则无变化。发现增加RFC可以增加牛奶产量,牛奶蛋白质含量和产量以及乳糖含量和产量,但可以减少牛奶脂肪含量。 FPS的增加对牛奶生产的影响不如RFC大。这项研究发现,尽管观察到FPS和RFC用于DMI的交互作用,但FPS和RFC之间没有显着的交互作用。 FPS和RFC都不影响瘤胃发酵,而RFC对牛奶产量和成分的影响比FPS大。

著录项

  • 来源
    《Journal of dairy science》 |2013年第5期|3085-3097|共13页
  • 作者单位

    Department of Animal Science, The Pennsylvania State University, University Park 16802;

    Department of Animal Science, The Pennsylvania State University, University Park 16802;

  • 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

    forage particle size; ruminally fermentable starch; sorting;

    机译:饲料粒度反刍动物可发酵淀粉;分类;

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