Münnich Matthias, Khol-Parisini Annabella, Klevenhusen Fenja, Metzler-Zebeli Barbara U, Zebeli Qendrim
Institute of Animal Nutrition and Functional Plant Compounds, Department for Farm Animals and Veterinary Public Health, University of Veterinary Medicine Vienna, Vienna, Austria.
University Clinic for Swine, Department of Farm Animals and Veterinary Public Health, University of Veterinary Medicine Vienna, Vienna, Austria.
J Sci Food Agric. 2018 Feb;98(3):991-997. doi: 10.1002/jsfa.8547. Epub 2017 Aug 22.
Molassed sugar beet pulp (Bp) is a viable alternative to grains in cattle nutrition for reducing human edible energy input. Yet little is known about the effects of high inclusion rates of Bp on rumen microbiota. This study used an in vitro approach and the quantitative polymerase chain reaction technique to establish the effects of a graded replacement of maize grain (MG) by Bp on the ruminal microbial community, fermentation profile and nutrient degradation.
Six different amounts of Bp (0-400 g kg ), which replaced MG in the diet, were tested using the in vitro semi-continuous rumen simulation technique. The increased inclusion of Bp resulted in greater dietary content and degradation of neutral detergent fibre (P < 0.01). Further, Bp feeding enhanced (P < 0.01) the abundance of genus Prevotella and shifted (P < 0.01) the short-chain fatty acid patterns in favour of acetate and propionate and at the expense of butyrate. A total replacement of MG with Bp resulted in an increased daily methane production (P < 0.01).
Results suggest positive effects of the replacement of MG by Bp especially in terms of stimulating ruminal acetate and propionate fermentation. However, high replacement rates of Bp resulted in lowered utilization of ammonia and higher ruminal methane production. © 2017 Society of Chemical Industry.
糖蜜甜菜粕(Bp)是牛营养中谷物的可行替代品,可减少人类可食用能源投入。然而,关于高添加率的Bp对瘤胃微生物群的影响知之甚少。本研究采用体外方法和定量聚合酶链反应技术,确定用Bp逐步替代玉米谷物(MG)对瘤胃微生物群落、发酵特性和养分降解的影响。
使用体外半连续瘤胃模拟技术测试了六种不同量的Bp(0 - 400 g/kg),其在日粮中替代了MG。Bp添加量的增加导致日粮中性洗涤纤维含量和降解率更高(P < 0.01)。此外,饲喂Bp提高了(P < 0.01)普氏菌属的丰度,并改变了(P < 0.01)短链脂肪酸模式,有利于乙酸盐和丙酸盐生成,同时丁酸盐减少。用Bp完全替代MG导致每日甲烷产量增加(P < 0.01)。
结果表明用Bp替代MG有积极影响,特别是在刺激瘤胃乙酸盐和丙酸盐发酵方面。然而,高替代率的Bp导致氨利用率降低和瘤胃甲烷产量增加。© 2017化学工业协会。