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Use of Lysozyme as a Feed Additive on In vitro Rumen Fermentation and Methane Emission

机译:溶菌酶作为饲料添加剂在体外瘤胃发酵和甲烷排放中的应用

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摘要

This study was conducted to determine the effect of lysozyme addition on in vitro rumen fermentation and to identify the lysozyme inclusion rate for abating methane (CH4) production. An in vitro ruminal fermentation technique was done using a commercial concentrate to rice straw ratio of 8:2 as substrate. The following treatments were applied wherein lysozyme was added into 1 mg dry matter substrate at different levels of inclusion: Without lysozyme, 2,000, 4,000, and 8,000 U lysozyme. Results revealed that, lysozyme addition had a significant effect on pH after 24 h of incubation, with the highest pH (p<0.01) observed in 8,000 U lysozyme, followed by the 4,000 U, 2,000 U, and without lysozyme. The highest amounts of acetic acid, propionic acid (p<0.01) and total volatile fatty acid (TVFA) (p<0.05) were found in 8,000 U after 24 h of incubation. The CH4 concentration was the lowest in the 8,000 U and the highest in the without lysozyme addition after 24 h of incubation. There was no significant differences in general bacteria, methanogen, or protozoan DNA copy number. So far, addition of lysozyme increased the acetate, propionate, TVFA, and decreased CH4 concentration. These results suggest that lysozyme supplementation may improve in vitro rumen fermentation and reduce CH4 emission.
机译:进行这项研究以确定溶菌酶添加对体外瘤胃发酵的影响,并确定溶菌酶的包合率以减少甲烷(CH4)的产生。以市售浓缩物与稻草的比率为8:2作为底物,进行了体外瘤胃发酵技术。进行以下处理,其中将溶菌酶以不同的包合水平添加到1 mg干物质底物中:没有溶菌酶,则加入2,000、4,000和8,000 U溶菌酶。结果显示,孵育24小时后,添加溶菌酶对pH值有显着影响,在8,000 U溶菌酶中观察到最高的pH(p <0.01),其次是4,000 U,2,000 U,而没有溶菌酶。孵育24小时后,在8,000 U中发现了最高量的乙酸,丙酸(p <0.01)和总挥发性脂肪酸(TVFA)(p <0.05)。孵育24小时后,CH4浓度在8,000 U中最低,在不添加溶菌酶的情况下最高。一般细菌,产甲烷菌或原生动物的DNA拷贝数没有显着差异。到目前为止,溶菌酶的添加增加了乙酸盐,丙酸盐,TVFA,并降低了CH4浓度。这些结果表明,添加溶菌酶可以改善体外瘤胃发酵并减少CH4的排放。

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