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Nutrient demand interacts with grass particle length to affect digestion responses and chewing activity in dairy cows

机译:营养需求与草颗粒长度相互作用,影响奶牛的消化反应和咀嚼活性

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摘要

Effects of grass particle length on dry matter intake (DMI), milk production, ruminal fermentation and pool sizes, digestion and passage kinetics, and chewing activity and the relationship of these effects with preliminary DMI (pDMI) were evaluated using 15 ru-minally and duodenally cannulated Holstein cows in a crossover design with a 14-d preliminary period and two 18-d treatment periods. During the preliminary period, pDMI of individual cows ranged from 22.6 to 29.8 kg/d (mean = 25.8 kg/d) and 3.5% fat-corrected milk yield ranged from 29.2 to 56.9 kg/d (mean = 41.9 kg/d). Experimental treatments were diets containing orchardgrass silage chopped to either (a) 19-mm (long) or (b) 10-mm (short) theoretical length of cut as the sole forage. Grass silages contained approximately 46% neutral detergent fiber (NDF); diets contained 50% forage, 23% forage NDF, and 28% total NDF. Preliminary DMI, an index of nutrient demand, was determined during the last 4 d of the preliminary period when cows were fed a common diet and used as a covariate. Main effects of grass particle length and their interaction with pDMI were tested by ANOVA. Grass particle length and its interaction with pDMI did not affect milk yield, milk composition, or rumen pH. Long particle length tended to decrease DMI compared with short particle length, which might have been limited by rumen fill or chewing time, or both. Passage rates of feed fractions did not differ between long and short particle lengths and were not related to level of intake. As pDMI increased, long particles decreased ruminal digestion rate of potentially digestible NDF at a faster rate than short particles. As a result, long particles decreased or tended to decrease rates of ruminal turnover for NDF, organic matter, and dry matter and increased their rumen pools compared with short particles for cows with high pDMI. Long particles increased eating time, which affected cows with high intake to the greatest extent, and total chewing time compared with short particles. As intake increased, ruminal digestion (kg/d) and digestibility (%) of starch decreased, rumen pool size of starch increased, and postruminal digestion and digestibility of starch increased quadratically. When grass silage was the only source of forage in the diet, increasing chop length from 10 to 19 mm tended to decrease DMI but did not negatively affect productivity of cows, which were fed adequate fiber.
机译:用15 ru-min的量评估草长对干物质摄入量(DMI),产奶量,瘤胃发酵和池大小,消化和通过动力学以及咀嚼活性的影响,以及这些影响与初步DMI(pDMI)的关系。跨界设计的十二指肠插管荷斯坦奶牛,其初始期为14天,两个治疗期为18天。在初步阶段,每头母牛的pDMI为22.6至29.8 kg / d(平均= 25.8 kg / d),而3.5%的脂肪校正乳产量为29.2至56.9 kg / d(平均= 41.9 kg / d)。实验处理是将果园青贮饲料切成理论上的(a)19毫米(长)或(b)10毫米(短)理论长度作为唯一饲料的饲料。青贮草中含有约46%的中性洗涤剂纤维(NDF);日粮中含有50%的草料,23%的草料NDF和28%的总NDF。初步DMI是营养需要量的指标,是在初始阶段的最后4天内确定的,当时奶牛饲喂了普通饲料并用作协变量。通过ANOVA测试了草粒长度及其与pDMI相互作用的主要影响。草的颗粒长度及其与pDMI的相互作用不会影响牛奶产量,牛奶成分或瘤胃pH。与较短的颗粒长度相比,较长的颗粒长度倾向于降低DMI,这可能已受到瘤胃填充或咀嚼时间或两者的限制。饲料级分的通过率在长短颗粒长度之间没有差异,并且与摄入量无关。随着pDMI的增加,长颗粒降低了潜在可消化NDF的瘤胃消化率,其速率比短颗粒降低了。结果,与具有高pDMI的母牛的短颗粒相比,NDF,有机物和干物质的长颗粒降低或趋于降低瘤胃周转率,并增加瘤胃库。长颗粒增加了进食时间,与短颗粒相比,高摄入量的母牛受到最大程度的影响,总咀嚼时间受到影响。随着摄入量的增加,淀粉的瘤胃消化率(kg / d)和消化率(%)降低,淀粉的瘤胃池大小增加,并且淀粉的瘤胃消化率和消化率呈二次方增加。当草料青贮饲料是饲料中唯一的饲料来源时,将排骨长度从10毫米增加到19毫米往往会降低DMI,但不会不利地影响饲喂足够纤维的母牛的生产力。

著录项

  • 来源
    《Journal of dairy science》 |2012年第2期|p.807-823|共17页
  • 作者

    K. L. Katnmes; M. S. Allen;

  • 作者单位

    Department of Animal Science, Michigan State University, East Lansing 48824-1225;

    Department of Animal Science, Michigan State University, East Lansing 48824-1225;

  • 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

    particle size; grass silage; chewing activity; digestion kinetics;

    机译:粒度青贮青草;咀嚼活动;消化动力学;

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