ABSTRACT In vitro gas and methane production of silages from whole-plant corn harvested at 4 different stages of maturity and a comparison with in vivo methane production
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In vitro gas and methane production of silages from whole-plant corn harvested at 4 different stages of maturity and a comparison with in vivo methane production

机译:在四个不同的成熟阶段收获的全植物玉米的青贮饲料的体外气体和甲烷产量,以及与体内甲烷产量的比较

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摘要

ABSTRACTThe current study investigated the relationship between in vitro and in vivo CH4production by cows fed corn silage (CS)-based rations. In vivo CH4production was measured in climate respiration chambers using 8 rumen-cannulated Holstein-Friesian cows. In vitro CH4production was measured using rumen fluid from the 8 cows that were fully adapted to their respective experimental rations. The animals were grouped in 2 blocks, and randomly assigned to 1 of the 4 total mixed rations (TMR) that consisted of 75% experimental CS, 20% concentrate, and 5% wheat straw [dry matter (DM) basis]. The experimental CS were prepared from whole-plant corn that was harvested at either a very early (25% DM), early (28% DM), medium (32% DM), or late (40% DM) stage of maturity. The 4 experimental TMR and the corresponding CS served as substrate in 2 separate in vitro runs (each run representing 1 block of 4 animals) using rumen fluid from cows fed the TMR in question. No relationship was found between in vivo CH4production and in vitro CH4production measured at various time points between 2 and 48 h. None of the in vitro gas production (GP) and CH4production parameters was influenced by an interaction between substrate and origin of rumen fluid. In vitro measured 48-h GP was not affected by the maturity of whole-plant corn, irrespective whether CS alone or as part of TMR was incubated in adapted rumen inoculum. Incubation of the experimental TMR did not affect the kinetics parameters associated with gas or CH4production, but when CS alone was incubated the asymptote of GP of the soluble fraction was slightly decreased with increasing maturity of CS at harvest. In vitro CH4production expressed as a percent of total gas was not affected by the maturity of whole-plant corn at harvest. Several in vitro parameters were significantly affected (GP) or tended to be affected (CH4) by diet fed to donor cows. It was concluded that the current in vitro technique is not suitable to predict in vivo CH4production from CS-based rations.
机译: 抽象 目前的研究调查了饲喂玉米的奶牛体内CH 4 的体内外关系基于青贮(CS)的口粮。使用8个瘤胃插管的荷斯坦-弗里斯兰奶牛在气候呼吸室内测量了体内CH 4 的产量。使用来自8头母牛的瘤胃液测量了CH 4 的体外生产,这些瘤胃液完全适应了各自的实验比例。将动物分为2个块​​,并随机分配到4种总混合日粮(TMR)中的1种中,该混合日粮由75%的实验性CS,20%的浓缩物和5%的小麦秸秆[干物质(DM)]组成。实验性CS是从整株玉米中制备的,该玉米是在成熟的非常早期(25%DM),早期(28%DM),中等(32%DM)或晚期(40%DM)收获的。 4个实验性TMR和相应的CS在2个独立的体外试验中用作底物(每个试验代表4个动物的1块),使用的牛瘤胃液来自喂食相关TMR的牛。体内CH 4 的产生与体外CH 4 的产生之间没有相关性2至48小时之间的各个时间点。底物和瘤胃液来源之间的相互作用都不会影响体外产气量(GP)和CH 4 的生产参数。体外测量的48小时GP不受整株玉米成熟度的影响,无论CS单独还是作为TMR的一部分在适应的瘤胃接种物中孵育。孵育实验性TMR不会影响与气体或CH 4 产生相关的动力学参数,但是当单独孵育CS时,可溶级分的GP渐近线是随收获期CS成熟度的增加略有下降。体外CH 4 产量(以总气体的百分比表示)不受收获时全株玉米成熟度的影响。饲喂供体母牛的日粮会显着影响几个体外参数(GP)或趋于影响(CH 4 )。结论是,当前的体外技术不适合预测基于CS的口粮的体内CH 4 的产生。 < / ce:abstract-sec>

著录项

  • 来源
    《Journal of dairy science》 |2017年第11期|8895-8905|共11页
  • 作者单位

    Department of Farm Animal Health, Faculty of Veterinary Medicine, Utrecht University;

    Department of Animal Sciences, Animal Nutrition Group, Wageningen University and Research;

    Department of Farm Animal Health, Faculty of Veterinary Medicine, Utrecht University,Department of Animal Sciences, Animal Nutrition Group, Wageningen University and Research;

    Department of Animal Sciences, Animal Nutrition Group, Wageningen University and Research;

    Department of Animal Sciences, Animal Nutrition Group, Wageningen University and Research;

    Department of Farm Animal Health, Faculty of Veterinary Medicine, Utrecht University;

    Department of Animal Sciences, Animal Nutrition Group, Wageningen University and Research;

  • 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

    methane; corn silage; maturity; in vitro; in vivo;

    机译:甲烷;玉米青贮;成熟度;体外;体内;
  • 入库时间 2022-08-17 23:22:54

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