Mwenya B, Santoso B, Sar C, Pen B, Morikawa R, Takaura K, Umetsu K, Kimura K, Takahashi J
Department of Animal Science, Obihiro University of Agriculture and Veterinary Medicine, 080-8555, Japan.
J Dairy Sci. 2005 Apr;88(4):1404-12. doi: 10.3168/jds.S0022-0302(05)72808-3.
Four nonlactating, ruminally cannulated Holstein cows were used in a 4 x 4 Latin square design, balanced for residual effects, to evaluate the effects of supplementing dairy cow diets with yeast culture (Trichosporon sericeum; YC), galacto-oligosaccharides (GOS), or the mixture of YC and GOS on ruminal fermentation, microbial N supply, in situ degradation, and energy and nitrogen metabolism. Treatments were arranged in a 2 x 2 factorial as follows: 1) basal diet, 2) basal diet plus 10 g/d YC, 3) basal diet plus 2% GOS, 4) basal diet plus a mixture of 10 g/d YC and 2% GOS. Nitrogen losses in urine were lower, and retained N was higher, for cows supplemented with a mixture of YC and GOS. Ruminal pH was lower in cows supplemented with GOS alone compared with other treatments. Total VFA concentration was higher in cows fed control and GOS-supplemented diets than in those fed YC containing diets. The molar proportion of propionate was higher, and the molar proportion of acetate was lower, in cows fed control diets. Microbial N supply was higher in cows fed control diets. There were no major positive effects of supplements observed in this study. However, supplementation of a mixture of YC and GOS had a tendency for synergistic effects on N metabolism and in situ degradation of a soluble fraction of oat straw DM and CP of concentrates compared with supplementation of YC or GOS alone.
选用4头非泌乳、安装有瘤胃瘘管的荷斯坦奶牛,采用4×4拉丁方设计,并考虑残留效应进行平衡,以评估在奶牛日粮中添加酵母培养物(丝孢酵母;YC)、低聚半乳糖(GOS)或YC与GOS混合物对瘤胃发酵、微生物氮供应、原位降解以及能量和氮代谢的影响。处理按2×2析因设计安排如下:1)基础日粮,2)基础日粮加10 g/d YC,3)基础日粮加2% GOS,4)基础日粮加10 g/d YC与2% GOS的混合物。补充YC和GOS混合物的奶牛尿液中的氮损失较低,氮保留量较高。与其他处理相比,仅补充GOS的奶牛瘤胃pH较低。饲喂对照日粮和补充GOS日粮的奶牛总挥发性脂肪酸(VFA)浓度高于饲喂含YC日粮的奶牛。饲喂对照日粮的奶牛丙酸的摩尔比例较高,乙酸的摩尔比例较低。饲喂对照日粮的奶牛微生物氮供应较高。本研究中未观察到补充剂的主要积极作用。然而,与单独补充YC或GOS相比,补充YC和GOS混合物对氮代谢以及燕麦秸秆干物质和精料粗蛋白可溶部分的原位降解有协同作用倾向。