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Tea saponin reduced methanogenesis in vitro but increased methane yield in lactating dairy cows

机译:茶皂素可降低泌乳奶牛的甲烷生成量,但提高甲烷产量

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摘要

The effect of tea saponin supplementation in the ruminant diet on methane emissions, rumen fermenta-tion, and digestive processes is still under debate. The objective of this study was to assess the effect of this plant extract on methanogenesis, total-tract digestibil-ity, and lactating performances of dairy cows. The work included 2 independent and successive experiments. First, the effect of 7 tea saponin doses (from 0 to 0.50 g/L) on methane emissions and protozoa concentrations was tested in 2 repeated in vitro batch culture incuba-tions using bovine rumen contents as inoculum and a cereal mixture as substrate. After 18 h of incubation, total gas production and composition as well as rumen fermentation parameters and protozoa concentration were analyzed. Increasing dosage of the plant extract reduced methane production and protozoa concentra-tion, with a maximum reduction of 29% for CH_4 (mL/g of substrate) and 51% for protozoa (10~5/mL). Tea sa-ponin did not affect volatile fatty acids concentration, but marginally decreased total gas production by 5% at the highest dose. Second, a 2-period crossover design experiment was carried out with 8 lactating dairy cows fed a basal diet (54% corn silage, 6% hay, and 40% pelleted concentrates on a dry matter basis) without (control) or with 0.52% tea saponin (TSP). Each ex-perimental period lasted 5 wk. Animals were fed ad libitum during the first 3 wk of the period (wk 1, 2, and 3) and restricted (95% of ad libitum intake) during the last 2 wk (wk 4 and 5). Intake and milk production were recorded daily. Methane emissions were quantified using open chambers (2 d, wk 4). Total-tract digest-ibility and nitrogen balance were determined from total feces and urine collected separately (5 d, wk 5). Rumen fermentation parameters and protozoa concentration were analyzed from samples taken after morning feed-ing (1 d, wk 5). Milk production, dry matter intake, and feed efficiency were reduced with TSP (-18, -12, and -8%, respectively). As daily methane production (g/d) was not affected, methane emissions (g/kg of dry matter intake) increased by 14% with TSP. Total-tract digestibility and nitrogen balance were similar between diets, except for acid detergent fiber digestibility, which tended to be improved with TSP (+4 percentage units). Rumen fermentation parameters and protozoa concentration were relatively unchanged by diets. Un-der the conditions of this experiment, tea saponin is not efficient to reduce methane emissions from dairy cows.
机译:反刍动物日粮中添加茶皂素对甲烷排放,瘤胃发酵和消化过程的影响尚有争议。这项研究的目的是评估这种植物提取物对奶牛产甲烷率,全道消化率和泌乳性能的影响。这项工作包括2个独立且连续的实验。首先,在两次重复的体外分批培养中,以牛瘤胃成分为接种物,以谷物混合物为底物,测试了7种茶皂素剂量(0至0.50 g / L)对甲烷排放和原生动物浓度的影响。孵育18小时后,分析了总气体产量和组成以及瘤胃发酵参数和原生动物浓度。增加植物提取物的剂量会降低甲烷的产生和原生动物的浓度,CH_4(mL / g底物)的最大减少量为29%,原生动物(10〜5 / mL)的最大减少量为51%。茶皂素不影响挥发性脂肪酸的浓度,但在最高剂量下总气体产量略微降低了5%。其次,在不使用(对照)或使用0.52%的基础饲料(54%玉米青贮,6%干草和40%颗粒浓缩饲料)的基础上,对8头泌乳奶牛进行了2期交叉设计实验。茶皂素(TSP)。每个实验期持续5周。在此期间的前3周(第1、2和3周)随意喂养动物,并在最后2周(第4和5周)限制动物(随意摄入的95%)。每天记录摄入量和产奶量。使用开放式腔室(2 d,wk 4)对甲烷排放进行定量。从分别收集的粪便和尿液中(5 d,wk 5)确定总道消化率和氮平衡。从早晨喂食后(1 d,wk 5)采集的样品分析瘤胃发酵参数和原生动物浓度。 TSP降低了牛奶产量,干物质摄入量和饲料效率(分别为-18,-12和-8%)。由于每日甲烷产量(g / d)不受影响,TSP的甲烷排放量(g / kg干物质摄入量)增加了14%。日粮之间的总消化率和氮平衡相似,除了酸性洗涤剂纤维的消化率,TSP(+ 4%单位)趋于改善。日粮的瘤胃发酵参数和原生动物浓度相对不变。在该实验的条件下,茶皂素不能有效减少奶牛的甲烷排放。

著录项

  • 来源
    《Journal of dairy science》 |2017年第3期|1845-1855|共11页
  • 作者单位

    UMR1213 Herbivores, INRA, VetAgro Sup, Clermont Universite, Universite de Lyon, F-63122 Saint-Genes-Champanelle, France;

    UMR1213 Herbivores, INRA, VetAgro Sup, Clermont Universite, Universite de Lyon, F-63122 Saint-Genes-Champanelle, France;

    UMR1213 Herbivores, INRA, VetAgro Sup, Clermont Universite, Universite de Lyon, F-63122 Saint-Genes-Champanelle, France;

    UMR1213 Herbivores, INRA, VetAgro Sup, Clermont Universite, Universite de Lyon, F-63122 Saint-Genes-Champanelle, France;

    NEOVIAby InVivo, Talhoueet, F-56250 Saint-Nolff, France;

    UMR1213 Herbivores, INRA, VetAgro Sup, Clermont Universite, Universite de Lyon, F-63122 Saint-Genes-Champanelle, France;

  • 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

    dairy cow; methane; rumen fermentation; tea saponin;

    机译:奶牛;甲烷瘤胃发酵茶皂素;
  • 入库时间 2022-08-17 23:22:46

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