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

被引:676
作者
Allen, MS
机构
[1] Department of Animal Science, Michigan State University, East Lansing
关键词
fiber requirements; ruminal fermentation; effective fiber;
D O I
10.3168/jds.S0022-0302(97)76074-0
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
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 daily cows and have the most variable ruminal degradation across diets. The nonfiber 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.
引用
收藏
页码:1447 / 1462
页数:16
相关论文
共 101 条
[1]   NONSTRUCTURAL CARBOHYDRATE AND PROTEIN EFFECTS ON RUMEN FERMENTATION, NUTRIENT FLOW, AND PERFORMANCE OF DAIRY-COWS [J].
ALDRICH, JM ;
MULLER, LD ;
VARGA, GA ;
GRIEL, LC .
JOURNAL OF DAIRY SCIENCE, 1993, 76 (04) :1091-1105
[2]  
[Anonymous], 1975, Digestion and metabolism in the ruminant
[3]  
[Anonymous], 1989, Nutrient requirements of dairy cattle
[4]   MODELING OF RUMEN WATER KINETICS AND EFFECTS OF RUMEN PH CHANGES [J].
ARGYLE, JL ;
BALDWIN, RL .
JOURNAL OF DAIRY SCIENCE, 1988, 71 (05) :1178-1188
[5]   Measuring the effectiveness of fiber by animal response trials [J].
Armentano, L ;
Pereira, M .
JOURNAL OF DAIRY SCIENCE, 1997, 80 (07) :1416-1425
[6]   EFFECT OF ABSORPTION ON ACIDITY OF RUMEN CONTENTS [J].
ASH, RW ;
DOBSON, A .
JOURNAL OF PHYSIOLOGY-LONDON, 1963, 169 (01) :39-&
[7]   INHIBITION AND EXCITATION OF RETICULO-RUMEN CONTRACTIONS FOLLOWING THE INTRODUCTION OF ACIDS INTO THE RUMEN AND ABOMASUM [J].
ASH, RW .
JOURNAL OF PHYSIOLOGY-LONDON, 1959, 147 (01) :58-73
[8]   SALIVA SECRETION AND ITS RELATION TO FEEDING IN CATTLE .2. COMPOSITION AND RATE OF SECRETION OF MIXED SALIVA IN COW DURING REST [J].
BAILEY, CB ;
BALCH, CC .
BRITISH JOURNAL OF NUTRITION, 1961, 15 (03) :383-+
[10]   IMPACT OF NONFIBER CARBOHYDRATE ON INTAKE, DIGESTION, AND MILK-PRODUCTION BY DAIRY-COWS [J].
BATAJOO, KK ;
SHAVER, RD .
JOURNAL OF DAIRY SCIENCE, 1994, 77 (06) :1580-1588