Prediction of the metabolizable energy value of whole-crop wheat from laboratory-based measurements

被引:10
作者
Adesogan, AT
Owen, E
Givens, DI
机构
[1] Univ Reading, Dept Agr, Reading RG6 6AT, Berks, England
[2] ADAS Drayton, Feed Evaluat & Nutr Sci, Stratford Upon Avon CV37 9RQ, England
来源
ANIMAL SCIENCE | 1999年 / 69卷
关键词
in vitro digestibility; metabolizable energy; silage; whole-crop silage;
D O I
10.1017/S1357729800051006
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 accuracy with which several laboratory-based measurements predict the metabolizable energy (ME) value of whole-crop wheat (WCW) was determined. Twenty-six WCW forages differing in variety (cv. Slepjner, Hussar and Cadenza), maturity at harvest (milk, cheese and dough stages) and treatment applied (urea-treated, untreated or acid-based additive treated) were harvested in 2 years and conserved anaerobically in 200-l barrels. The forages were then scanned using near infrared reflectance spectroscopy (NIRS) and analysed for chemical composition, in vitro rumen fluid-pepsin digestibility, in vitro neutral detergent-cellulase plus gamannase digestibility, in vitro fermentation gas production and in situ rumen degradability ME was calculated using measured energy losses in faeces and urine and predicted energy losses as methane. The relationships between ME and the laboratory-based measurements were determined by regression. Guess energy was consistently the best predictor of ME (R-2 = 0.53 and 0.86 in years 1 and 2 respectively). However the autocorrelation involved, militates against the prediction of ME from gross energy. None of the chemical constituents or biological techniques gave a good, robust prediction of ME. However, an NIRS calibration developed using the WCW samples was highly correlated (R-2 = 0.68) with ME. This work therefore suggests that traditional laboratory-based, food evaluation techniques are unsuitable far predicting the ME content of WCW but that NIRS holds promise.
引用
收藏
页码:427 / 439
页数:13
相关论文
共 44 条
[11]   PREDICTION OF THE ORGANIC-MATTER DIGESTIBILITY OF GRASS-SILAGE [J].
BARBER, GD ;
GIVENS, DI ;
KRIDIS, MS ;
OFFER, NW ;
MURRAY, I .
ANIMAL FEED SCIENCE AND TECHNOLOGY, 1990, 28 (1-2) :115-128
[12]   STANDARD NORMAL VARIATE TRANSFORMATION AND DE-TRENDING OF NEAR-INFRARED DIFFUSE REFLECTANCE SPECTRA [J].
BARNES, RJ ;
DHANOA, MS ;
LISTER, SJ .
APPLIED SPECTROSCOPY, 1989, 43 (05) :772-777
[13]   MODELING GAS-PRODUCTION KINETICS OF GRASS SILAGES INCUBATED WITH BUFFERED RUMINAL FLUID [J].
BEUVINK, JMW ;
KOGUT, J .
JOURNAL OF ANIMAL SCIENCE, 1993, 71 (04) :1041-1046
[14]   PREDICTION OF AMOUNT OF METHANE PRODUCED BY RUMINANTS [J].
BLAXTER, KL ;
CLAPPERTON, JL .
BRITISH JOURNAL OF NUTRITION, 1965, 19 (04) :511-+
[15]  
BOEVER JL, 1988, ANIMAL FEED SCI TECH, V19, P247
[16]  
DEINUM B, 1968, Netherlands Journal of Agricultural Science, V16, P217
[17]   THE USE OF ENZYMES TO PREDICT THE DIGESTIBILITY OF ANIMAL FEEDS [J].
DOWMAN, MG ;
COLLINS, FC .
JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE, 1982, 33 (08) :689-696
[18]  
DOWMAN MG, 1993, J SCI FOOD AGR, V61, P327, DOI 10.1002/jsfa.2740610306
[19]  
Dulphy J.-P., 1981, Prevision de la valeur nutritive des aliments des ruminants [Demarquilly, C. (Coordinator)], P81
[20]   PREDICTION OF THE ENERGY VALUES OF COMPOUND FEEDS FOR RUMINANTS [J].
GIGER-REVERDIN, S ;
AUFRERE, J ;
SAUVANT, D ;
DEMARQUILLY, C ;
VERMOREL, M .
ANIMAL FEED SCIENCE AND TECHNOLOGY, 1994, 48 (1-2) :73-98