Literature DB >> 9241607

Relationship between fermentation acid production in the rumen and the requirement for physically effective fiber.

M S Allen1.   

Abstract

The content of ruminally fermented OM in the diet affects the fiber requirement of dairy cattle. Physically effective fiber is the fraction of feed that stimulates chewing activity. Chewing, in turn, stimulates saliva secretion. Bicarbonate and phosphate buffers in saliva neutralize acids produced by fermentation of OM in the rumen. The balance between the production of fermentation acid and buffer secretion is a major determinant of ruminal pH. Low ruminal pH may decrease DMI, fiber digestibility, and microbial yield and thus decrease milk production and increase feed costs. Diets should be formulated to maintain adequate mean ruminal pH, and variation in ruminal pH should be minimized by feeding management. The fraction of OM that is fermented in the rumen varies greatly among diets. This variation affects the amount of fermentation acids produced and directly affects the amount of physically effective fiber that is required to maintain adequate ruminal pH. Acid production in the rumen is due primarily to fermentation of carbohydrates, which represent over 65% of the DM in diets of dairy cows and have the most variable ruminal degradation across diets. The non-fiber carbohydrate content of the diet is often used as a proxy for ruminal fermentability, but this measure is inadequate. Ruminal fermentation of both nonfiber carbohydrate and fiber is extremely variable, and this variability is not related to the nonfiber carbohydrate content of the diet. The interaction of ruminally fermented carbohydrate and physically effective fiber must be considered when diets for dairy cattle are evaluated and formulated.

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Year:  1997        PMID: 9241607     DOI: 10.3168/jds.S0022-0302(97)76074-0

Source DB:  PubMed          Journal:  J Dairy Sci        ISSN: 0022-0302            Impact factor:   4.034


  58 in total

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3.  Processing Index of Barley Grain and Dietary Undigested Neutral Detergent Fiber Concentration Affected Chewing Behavior, Ruminal pH and Total Tract Nutrient Digestibility of Heifers Fed a High Grain Diet.

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4.  Effect of feed restriction on reproductive and metabolic hormones in dairy cows.

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5.  Effects of dietary roughage neutral detergent fiber levels and flint corn processing method on growth performance, carcass characteristics, feeding behavior, and rumen morphometrics of Bos indicus cattle1.

Authors:  Antonio Humberto F de Melo; Rodrigo S Marques; Vinícius N Gouvêa; Jonas de Souza; Camila D A Batalha; Débora C Basto; Danilo D Millen; James S Drouillard; Flávio A P Santos
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6.  Optimum roughage proportion in barley-based feedlot cattle diets: total tract nutrient digestibility, rumination, ruminal acidosis, short-chain fatty absorption, and gastrointestinal tract barrier function.

Authors:  Gwinyai E Chibisa; Karen A Beauchemin; Karen M Koenig; Gregory B Penner
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7.  Effects of source and concentration of neutral detergent fiber from roughage in beef cattle diets on feed intake, ingestive behavior, and ruminal kinetics.

Authors:  Rodrigo S Goulart; Ricardo A M Vieira; Joao L P Daniel; Rafael C Amaral; Vanessa P Santos; Sergio G Toledo Filho; Edward H Cabezas-Garcia; Luis O Tedeschi; Luiz G Nussio
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8.  The effect of encapsulated nitrate and monensin on ruminal fermentation using a semi-continuous culture system.

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9.  Response of sheep rumen fermentation and microbial communities to feed infected with the endophyte Epichloë gansuensis as evaluated with rumen-simulating technology.

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10.  Effect of individual SCFA on the epithelial barrier of sheep rumen under physiological and acidotic luminal pH conditions.

Authors:  Gabriele Greco; Franziska Hagen; Svenja Meißner; Zanming Shen; Zhongyan Lu; Salah Amasheh; Jörg R Aschenbach
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