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Increasing physically effective fiber content of dairy cow diets through forage proportion versus forage chop length: Chewing and ruminal pH

机译:通过饲草比例和饲草长度增加奶牛日粮的物理有效纤维含量:咀嚼和瘤胃pH

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摘要

A study was conducted to evaluate whether the risk of acidosis in dairy cows can be lowered by increasing the physically effective fiber (peNDF) concentration of the diet, either through increased theoretical chop length of alfalfa silage or higher proportion of forage in the diet. The experiment was designed as a replicated 4×4 Latin square using 8 ruminally cannulated lactating dairy cows. Treatments were arranged in a 2×2 factorial design; 2 forage particle lengths (FPL) of alfalfa silage (short and long) were combined with low (35:65) and high (60:40) forage:concentrate (F:C) ratios [dry matter (DM) basis]. Dietary peNDF concentration (DM basis) was determined from the sum of the proportion of dietary DM retained either on the 2 sieves (8 and 19 mm) or on the 3 sieves (1.18, 8, and 19 mm) of the Penn State Particle Separator multiplied by the neutral detergent fiber concentration of the diet. The dietary peNDF concentrations were altered by changing the F:C or the FPL, and ranged from 10.7 to 17.5% using 2 sieves, or from 23.1 to 28.2% using 3 sieves. Intake of peNDF was increased by increasing FPL but not by increasing F:C ratio because of the reduction of DM intake at the higher F:C ratio. Chewing activity, including number of chews and chewing time, increased with increasing F:C ratio or FPL. Mean ruminal pH was elevated by 0.4 and 0.2 units with increasing F:C ratio and FPL, respectively. Lowering the F:C ratio decreased the duration that ruminal pH was below 5.8 (1.2 vs. 8 h/d). Increased F:C ratio or FPL reduced ruminal volatile fatty acids concentration from 137 to 122 or from 133 to 126 mM, respectively, whereas acetate:propionate ratio was increased from 2.55 to 3.46 with increasing F:C ratio. Dietary peNDF concentration measured using 2 sieves was correlated to chewing time (r = 0.57) and mean ruminal pH (r = 0.75), whereas dietary peNDF concentration measured using 3 sieves was correlated to mean ruminal pH (r = 0.83) and negatively correlated to the time that pH wasrnbelow 5.8 (r = -0.78). This study shows that the risk of ruminal acidosis is high for cows fed a low F:C diet. Increasing the proportion of forage in the diet helps prevent ruminal acidosis through increased chewing time, a change in meal patterns, and decreased ruminal acid production. Increasing FPL elevates ruminal pH, but in low forage diets, increased FPL does not alleviate subacute acidosis because the ferment ability of the diet is high and changes in chewing activity are marginal.
机译:进行了一项研究,以评估通过增加苜蓿青贮饲料的理论排骨长度或增加饲料中草料的比例,可以通过提高饲料中的物理有效纤维(peNDF)浓度来降低奶牛酸中毒的风险。该实验被设计为使用8个瘤胃插管的泌乳奶牛的4×4拉丁方格。治疗安排为2×2析因设计;苜蓿青贮饲料(短长)的2种草料颗粒长度(FPL)与低(35:65)和高(60:40)的草料:浓缩物(F:C)比[干物质(DM)基础]结合在一起。膳食peNDF浓度(以DM为基础)由保留在Penn State颗粒分离器的2个筛子(8和19毫米)或3个筛子(1.18、8和19毫米)上的膳食DM比例之和确定。乘以饮食中性洗涤剂纤维的浓度。饮食中的peNDF浓度通过更改F:C或FPL进行更改,使用2个筛子在10.7%至17.5%之间,使用3个筛子在23.1%至28.2%之间。 peNDF的摄入量通过增加FPL而增加,但并未通过增加F:C比率而增加,因为在较高的F:C比率下DM摄入量减少了。咀嚼活动(包括咀嚼次数和咀嚼时间)随F:C比率或FPL的增加而增加。随着F:C比和FPL的增加,平均瘤胃pH值分别升高了0.4和0.2个单位。降低F:C比例可降低瘤胃pH值低于5.8的持续时间(1.2对8 h / d)。 F:C比值升高或FPL将瘤胃挥发性脂肪酸浓度分别从137 mM降低至122 mM或从133 mM降低至126 mM,而随着F:C比例的增加,乙酸酯:丙酸酯的比例从2.55降低至3.46。使用2个筛子测得的膳食peNDF浓度与咀嚼时间(r = 0.57)和平均瘤胃pH(r = 0.75)相关,而使用3个筛子测得的膳食peNDF浓度与平均瘤胃pH(r = 0.83)相关并且与pH值低于5.8(r = -0.78)的时间。这项研究表明,饲喂低F:C饮食的奶牛瘤胃酸中毒的风险很高。饲料中饲草比例的增加有助于通过增加咀嚼时间,改变饮食方式和减少瘤胃酸产生来防止瘤胃酸中毒。 FPL的增加会提高瘤胃的pH值,但是在低草料饮食中,FPL的增加并不能缓解亚急性酸中毒,因为饮食的发酵能力很高,咀嚼活性的变化很小。

著录项

  • 来源
    《Journal of dairy science》 |2009年第4期|1603-1615|共13页
  • 作者

    W. Z. Yang; K. A. Beauchemin;

  • 作者单位

    Agriculture and Agri-Food Canada, Research Centre, Lethbridge, Alberta, T1J 4B1, Canada;

    Agriculture and Agri-Food Canada, Research Centre, Lethbridge, Alberta, T1J 4B1, Canada;

  • 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

    physically effective fiber; chewing; ruminal pH; acidosis;

    机译:物理有效纤维;咀嚼瘤胃pH值酸中毒;
  • 入库时间 2022-08-17 23:25:01

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