首页> 外文期刊>Journal of dairy science >Effect of replacing alfalfa with panicled-tick clover or sericea lespedeza in corn-alfalfa-based substrates on in vitro ruminal methane production
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Effect of replacing alfalfa with panicled-tick clover or sericea lespedeza in corn-alfalfa-based substrates on in vitro ruminal methane production

机译:玉米苜蓿基底物中用圆锥花序三叶草或绢丝桃代替紫花苜蓿对体外瘤胃甲烷产生的影响

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摘要

Methane emissions from ruminant livestock contribute to total anthropogenic greenhouse gas emissions and reduce metabolizable energy intake by the animal. Condensed tannins (CT) are polyphenolic plant secondary compounds commonly produced by some perennial forage legumes that characteristically bind to protein, carbohydrates, and minerals. The degree to which CT may affect ruminant nutrition depends upon the concentration, structural composition, and biological activity of the CT. The objective of our experiment was to determine the effect of replacing alfalfa in a corn-alfalfa-based substrate with a legume containing CT on in vitro CH_4 production and the dynamics of fermentation using an in vitro gas production technique. All fermented substrates contained 50% ground corn as the energy concentrate portion, whereas the forage portion (50%) of each diet was comprised of alfalfa (control) or some combination of alfalfa and sericea lespedeza (SL) or panicled-tick clover (PTC). Our treatments consisted of PTC or SL 15, 30. and 45, which corresponded with 15, 30, or 45% replacement of the diet (alfalfa component) with either PTC or SL. Substrates containing 45% PTC or SL reduced in vitro CH_4 production. Treatments did not affect total gas production as compared with that of the control. Replacement of alfalfa with SL or PTC increased fermentable organic matter (FOM). The PTC treatment increased FOM by as much as 1.8% at the 45% replacement level, whereas FOM of SL 45 was increased by less than 1%,. The replacement of alfalfa with PTC increased substrate nutritive value greater than replacement with SL. There were no correlations between any physicochemi- cal constituent of the substrates and CH_4 production. A combination of factors associated with the inclusion of PTC and SL contributed to the in vitro CH_4 production, and CT in these forages was likely a major contributing factor. Further confirmation of these results on in situ or in vivo animal systems is required. If proven effective in an in vivo production scenario, replacement of commonly fed non-CT-containing legumes, such as alfalfa, with legumes containing CT might be a viable method to decrease the effect of animal agriculture on greenhouse gas production.
机译:反刍动物家畜的甲烷排放量导致了人为温室气体排放总量的增加,并减少了动物的可代谢能量摄入。缩合单宁(CT)是多酚类植物的次要化合物,通常是由一些多年生饲用豆类植物产生的,通常与蛋白质,碳水化合物和矿物质结合。 CT可能影响反刍动物营养的程度取决于CT的浓度,结构组成和生物学活性。我们实验的目的是确定用含CT的豆类替代玉米苜蓿基基质中的苜蓿对体外CH_4产生和使用体外气体产生技术的发酵动力学的影响。所有发酵的底物均含有50%的玉米粉作为能量浓缩部分,而每种饮食的草料部分(50%)由苜蓿(对照)或苜蓿和绢毛蝶(SL)或圆锥花序三叶草(PTC)组成)。我们的治疗包括PTC或SL 15、30。和45,这相当于用PTC或SL替代日粮(苜蓿成分)的15、30或45%。包含45%PTC或SL的底物减少了体外CH_4的产生。与对照相比,处理不影响总气体产量。用SL或PTC代替苜蓿会增加可发酵有机物(FOM)。 PTC处理在45%的替换水平下使FOM增长了1.8%,而SL 45的FOM增加了不到1%。用PTC代替紫花苜蓿可以增加底物的营养价值,比用SL替代更大。底物的任何物理化学组成与CH_4的产生之间没有相关性。与PTC和SL包含有关的综合因素促成了体外CH_4的产生,而这些草料中的CT可能是主要的促成因素。需要在原位或体内动物系统上进一步确认这些结果。如果证明在体内生产中有效,则用含CT的豆类代替通常饲喂的不含CT的豆类(如苜蓿)可能是降低动物农业对温室气体生产影响的可行方法。

著录项

  • 来源
    《Journal of dairy science》 |2015年第6期|3980-3987|共8页
  • 作者单位

    Division of Plant Sciences, University of Missouri, Columbia 65211;

    Department of Wildlife, Sustainability, and Ecosystem Sciences, Tarleton State University, Stephenville, TX 76402,Texas A&M AgriLife Research, Stephenville 76401;

    Oregon State University, Corvallis 97331;

    Department of Animal Science, Texas A&M University, College Station 77843;

    Department of Animal Science, Texas A&M University, College Station 77843;

    Department of Wildlife, Sustainability, and Ecosystem Sciences, Tarleton State University, Stephenville, TX 76402,Texas A&M AgriLife Research, Stephenville 76401;

    Department of Statistics, University of Missouri, Columbia 65211;

  • 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

    condensed tannin; greenhouse gas; legume; ruminant;

    机译:单宁浓缩温室气体;豆类反刍动物;
  • 入库时间 2022-08-17 23:23:38

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