The prediction of dry matter intake of temperate and tropical roughages from in vitro digestibility/gas-production data, and the dry matter intake and in vitro digestibility of African roughages in relation to ruminant liveweight gain

被引:24
作者
Blummel, M
Makkar, HPS
Chisanga, G
Mtimuni, J
Becker, K
机构
[1] UNIV HOHENHEIM,INST ANIM PROD TROP & SUBTROP 480,D-70599 STUTTGART,GERMANY
[2] BUNDA COLL AGR,LILONGWE,MALAWI
关键词
prediction of dry matter intake; in vitro gas production; kinetics of fermentation; lag phase; prediction of liveweight gain; partitioning factor;
D O I
10.1016/S0377-8401(97)81628-8
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 dry matter intake (DMI) of 54 roughages has been predicted by various parameters obtained from the incubation in an in vitro gas-production system. Rate and extent of gas production from whole roughage and isolated NDF were described by two exponential models y = B(1-e(-c(t-lag))) and y = B(1-e(-ct)) for t > lag, where y = gas volume at a given time t, B = potential cumulative gas production, c = rate of gas production and lag = initial lag for the onset of fermentation. Approximately 69% (P < 0.0001) of the variation in DMI of the 54 roughages was accounted for by the combination of B (59.6%), lag (5.6%) and c (3.4%). In the model where t > lag, B accounted for 53.6% of the variation in DMI and c for 16.1%. Approx. 81% (P < 0.0001) of the variation in DMI was explained by the kinetic parmeters based on NDF incubations (B-NDF 77.5%, C-NDF 3.7%, lag(NDF) not significant). In the model where t > lag, B-NDF accounted for 77.5% and C-NDF for 5% of the variation in DMI. Combinations of in vitro true degradabilities at 36 or 48 h with gas volumes measured in the same incubation either at 4, 6 or 8 h accounted for approximately 82.0% of the variation in DMI and the inclusion of the partitioning factor (PF) improved the correlation (r(2)) to 0.87. The PF reflects the partitioning of truly degraded substrate between short chain fatty acids and microbial cells, and roughages having proportionally higher microbial yield had higher DMI. These parameters together also predicted liveweight gain (LWG) of sheep fed six roughages from Ethiopia (r(2) = 0.98-0.99). The importance of DMI information for LWG is also discussed. (C) 1997 Elsevier Science B.V.
引用
收藏
页码:131 / 141
页数:11
相关论文
共 29 条
[1]   The degradability characteristics of fifty-four roughages and roughage neutral-detergent fibres as described by in vitro gas production and their relationship to voluntary feed intake [J].
Blummel, M ;
Becker, K .
BRITISH JOURNAL OF NUTRITION, 1997, 77 (05) :757-768
[2]   COMPARISON OF INVITRO GAS-PRODUCTION AND NYLON BAG DEGRADABILITY OF ROUGHAGES IN PREDICTING FEED-INTAKE IN CATTLE [J].
BLUMMEL, M ;
ORSKOV, ER .
ANIMAL FEED SCIENCE AND TECHNOLOGY, 1993, 40 (2-3) :109-119
[3]   The relationship between in vitro gas production, in vitro microbial biomass yield and N-15 incorporation and its implications for the prediction of voluntary feed intake of roughages [J].
Blummel, M ;
Steingab, H ;
Becker, K .
BRITISH JOURNAL OF NUTRITION, 1997, 77 (06) :911-921
[4]   The need to complement in vitro gas production measurements with residue determinations from in sacco degradabilities to improve the prediction of voluntary intake of hays [J].
Blummel, M ;
Bullerdieck, P .
ANIMAL SCIENCE, 1997, 64 :71-75
[5]  
BLUMMEL M, 1989, P 2 LIV IMPR C ADD A, P208
[6]   ON THE ANALYSIS OF DACRON BAG DATA FOR LOW DEGRADABILITY FEEDS [J].
DHANOA, MS .
GRASS AND FORAGE SCIENCE, 1988, 43 (04) :441-444
[7]  
FALL S, 1989, OVERCOMING CONSTRAIN, P173
[8]   A MODEL TO INTERPRET GAS ACCUMULATION PROFILES ASSOCIATED WITH IN-VITRO DEGRADATION OF RUMINANT FEEDS [J].
FRANCE, J ;
DHANOA, MS ;
THEODOROU, MK ;
LISTER, SJ ;
DAVIES, DR ;
ISAC, D .
JOURNAL OF THEORETICAL BIOLOGY, 1993, 163 (01) :99-111
[9]   THE EFFECT OF FORAGE LEGUME SUPPLEMENTATION ON DIGESTIBILITY AND BODY-WEIGHT GAIN BY SHEEP FED A BASAL DIET OF MAIZE STOVER [J].
GETACHEW, G ;
SAID, AN ;
SUNDSTOL, F .
ANIMAL FEED SCIENCE AND TECHNOLOGY, 1994, 46 (1-2) :97-108
[10]  
Grovum W. L., 1995, Ruminant physiology: digestion, metabolism, growth and reproduction. Proceedings 8th International Symposium on Ruminant Physiology., P173