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Improvement of nutrient utilization efficiency, ruminal fermentation and lactational performance of dairy cows by use of birdsfoot trefoil.

机译:利用鸟足三叶提高奶牛的养分利用率,瘤胃发酵和泌乳性能。

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摘要

Forages containing condensed tannins (CT) have potential to reduce the environmental impact of dairy farming. In 3 studies, I hypothesized that feeding CT containing birdsfoot trefoil (Lotus corniculatus, BFT) would result in improved nutrient utilization and lactational performance of dairy cows compared with control forages of the respective experiments.;Improved milk components, reduction in waste N, and overall improved N efficiency were hypothesized for BFT-fed cows compared to those cows fed alfalfa hay (Study 1) or grass-based diets (Study 2). In addition, a decrease in in vitro methane production and improved rumen fermentation due to diets based on BFT pasture and concentrate supplementation compared with grass pasture-based diets was the hypothesis of the third study.;Study 1 showed BFT-hay diets improved lactational performance through increased energy-corrected milk yield and increased milk protein yield, resulting in improved N utilization efficiency compared with the alfalfa hay diet. Total volatile fatty acids concentration tended to increase, and greater microbial protein yield was exhibited by cows fed BFT compared to other diets tested. Therefore, BFT can replace alfalfa hay in dairy diets and showed improved feed and N utilization efficiencies and lactational performance.;Study 2 determined that pasture nutrient content increased for BFT pasture compared to the mixed grass control, contributing to increases in milk yield most weeks during the 2-year study. Energy-corrected milk yield increased most weeks by BFT-grazed cows due to increased milk yield, although milk protein concentration was similar between treatments. Cows grazing BFT pasture increased N efficiency coupled with decreased milk urea N secretion in the first, but not the second year, suggesting an environmental advantage over traditional grass-based pastures depending on the effect of growing conditions on pasture quality at time of grazing.;Study 3 showed that offering BFT pasture to continuous cultures without or with barley grain or total mixed ration supplements reduced methane production and altered rumen microbial populations. The reduced methane production on the continuous cultures was likely due to direct and/or indirect effects of CT on rumen microbiota.;Overall, diets including BFT showed improved nutritive, lactational, and environmental benefits by decreasing N waste and methane production over typical alfalfa hay-based dairy diets and grass pastures.
机译:含有缩合单宁(CT)的草料有潜力减少奶牛养殖对环境的影响。在3项研究中,我假设与各个实验的对照饲草相比,饲喂含有鸡足三叶草(Lotus corniculatus,BFT)的CT可以提高奶牛的养分利用率和泌乳性能;改善牛奶成分,减少废物氮,以及假设与饲喂苜蓿干草(研究1)或以草食为基础的饲料(研究2)相比,使用BFT喂养的母牛总体上提高了氮效率。此外,第三项研究的假设是,与草牧场饮食相比,基于BFT牧场和浓缩饲料的饮食降低了体外甲烷的产生并改善了瘤胃发酵。研究1显示,BFT干草饮食改善了泌乳性能通过增加能量校正的牛奶产量和增加牛奶蛋白产量,与苜蓿干草饮食相比,提高了氮的利用效率。与其他测试日粮相比,饲喂BFT的母牛总挥发性脂肪酸浓度趋于增加,并且微生物蛋白产量更高。因此,BFT可以替代奶制品日粮中的苜蓿干草,并具有改善的饲料和氮利用效率和泌乳性能。研究2确定,与混合草相比,BFT牧场的牧草养分含量增加,在整个星期的大部分时间里牛奶产量增加为期两年的研究。由于乳汁产量增加,经BFT处理的奶牛经能量校正后的乳汁产量大多数星期都增加了,尽管两次处理之间的乳蛋白浓度相似。在第一年(而非第二年),放牧BFT牧场的奶牛提高了氮效率,同时降低了牛奶中尿素氮的分泌,这表明与传统的草基牧场相比,这具有环境优势,这取决于放牧时生长条件对牧场质量的影响。研究3表明,在没有或有大麦籽粒或总混合日粮补充剂的情况下为连续培养提供BFT牧场可减少甲烷的产生并改变瘤胃微生物种群。连续培养中甲烷产量的降低可能是由于CT对瘤胃微生物群的直接和/或间接影响所致;总的来说,包括BFT在内的日粮与常规苜蓿干草相比,通过减少N废物和甲烷产量,显示出改善的营养,泌乳和环境效益。为主的奶制品饮食和草牧场。

著录项

  • 作者

    Christensen, Rachael G.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Animal sciences.;Agronomy.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 207 p.
  • 总页数 207
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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