Mohammed N, Ajisaka N, Lila Z A, Hara Koji, Mikuni K, Hara K, Kanda S, Itabashi H
Bioresearch Corporation of Yokohama, Yokohama 230-0004, Japan.
J Anim Sci. 2004 Jun;82(6):1839-46. doi: 10.2527/2004.8261839x.
The effects of alpha-cyclodextrin-horseradish oil complex (CD-HR) on methane production and ruminal fermentation were studied in vitro and in steers. In the in vitro study, diluted ruminal fluid (30 mL) was incubated anaerobically at 38 degrees C for 6 h with or without CD-HR, using cornstarch as substrate. The CD-HR was added at various concentrations (0, 0.17, 0.85 and 1.7 g/L). Treatment affected neither the pH of the medium nor the number of protozoa. Total VFA increased in a linear manner (P = 0.02), and NH3-N decreased quadratically (P = 0.04) as the concentration of CD-HR increased from 0.17 g/L to 1.7 g/L. Molar proportions of acetate decreased in a linear manner (P = 0.03), and propionate increased linearly (P = 0.008) with increasing concentrations of CD-HR. Production of methane was inhibited up to 90%, whereas accumulation of dihydrogen was increased 36-fold by 1.7 g/L of CD-HR supplementation relative to controls. The effect of CD-HR on methane production, ruminal fermentation and microbes, and digestibility was further investigated in vivo using four Holstein steers in a crossover design. The CD-HR supplement was mixed into the concentrate portion of a (1.5:1) Sudangrass hay plus concentrate mixture that was fed twice daily to the steers. Ruminal samples were collected 0, 2, and 5 h after the morning feeding. No effects of CD-HR supplementation on ruminal pH (P = 0.63) or protozoal numbers (P = 0.44) were observed. Molar proportion of acetate was decreased (P = 0.04) and propionate was increased (P = 0.005) by CD-HR treatment. Molar proportion of butyrate was increased (P = 0.05) in CD-HR-supplemented steers. Ruminal NH3-N was decreased (P = 0.05) by treatment. Blood plasma glucose concentration was increased (P = 0.02) and urea-N was decreased (P = 0.04) with CD-HR supplementation. Daily DMI was decreased (P = 0.04), and apparent digestibility of DM (P = 0.13), NDF (P = 0.14), and CP tended (P = 0.14) to be increased by treatment. Methane production was decreased (P = 0.03) by 19%, and the number of methanogens was also decreased (P = 0.03). Although N retention (P = 0.11), total viable bacteria (P = 0.15), and sulfate-reducing bacteria (P = 0.17) were not significantly altered by treatment, tendencies for increases were noted with CD-HR supplementation. The number of cellulolytic (P = 0.38) and acetogenic bacteria (P = 0.32) remained unchanged by treatment. These results indicate that CD-HR supplementation can be used to decrease methane production in steers.
研究了α-环糊精-辣根油复合物(CD-HR)对体外及肉牛甲烷生成和瘤胃发酵的影响。在体外研究中,以玉米淀粉为底物,将稀释的瘤胃液(30 mL)在38℃下厌氧培养6 h,添加或不添加CD-HR。CD-HR添加浓度分别为0、0.17、0.85和1.7 g/L。处理对培养基pH值和原生动物数量均无影响。随着CD-HR浓度从0.17 g/L增加到1.7 g/L,总挥发性脂肪酸呈线性增加(P = 0.02),氨态氮呈二次方下降(P = 0.04)。随着CD-HR浓度增加,乙酸摩尔比例呈线性下降(P = 0.03),丙酸呈线性增加(P = 0.008)。甲烷生成被抑制高达90%,而相对于对照组,添加1.7 g/L CD-HR使氢气积累增加36倍。采用交叉设计,利用四头荷斯坦肉牛进一步在体内研究CD-HR对甲烷生成、瘤胃发酵、微生物及消化率的影响。将CD-HR补充剂混入(1.5:1)苏丹草干草加精料混合物的精料部分,每天分两次喂给肉牛。在早晨喂食后0、2和5 h采集瘤胃样本。未观察到添加CD-HR对瘤胃pH值(P = 0.63)或原生动物数量(P = 0.44)有影响。CD-HR处理使乙酸摩尔比例下降(P = 0.04),丙酸增加(P = 0.005)。添加CD-HR的肉牛中丁酸摩尔比例增加(P = 0.05)。处理使瘤胃氨态氮下降(P = 0.05)。添加CD-HR使血浆葡萄糖浓度增加(P = 0.02),尿素氮下降(P = 0.04)。日干物质采食量下降(P = 0.04),处理使干物质(P = 0.13)、中性洗涤纤维(P = 0.14)和粗蛋白的表观消化率有增加趋势(P = 0.14)。甲烷生成下降(P = 0.03)19%,产甲烷菌数量也下降(P = 0.03)。尽管处理对氮保留(P = 0.11)、总活菌数(P = 0.15)和硫酸盐还原菌(P = 0.17)无显著影响,但添加CD-HR有增加趋势。处理对纤维素分解菌(P = 0.38)和产乙酸菌数量(P = 0.32)无影响。这些结果表明,添加CD-HR可用于降低肉牛的甲烷生成。