首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >Influence of Yeast Fermented Cassava Chip Protein (YEFECAP) and Roughage to Concentrate Ratio on Ruminal Fermentation and Microorganisms Using In vitro Gas Production Technique
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Influence of Yeast Fermented Cassava Chip Protein (YEFECAP) and Roughage to Concentrate Ratio on Ruminal Fermentation and Microorganisms Using In vitro Gas Production Technique

机译:酵母发酵木薯片蛋白(YEFECAP)和粗浓比对体外产气技术对瘤胃发酵和微生物的影响

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摘要

The objective of this study was to determine the effects of protein sources and roughage (R) to concentrate (C) ratio on in vitro fermentation parameters using a gas production technique. The experimental design was a 2×5 factorial arrangement in a completely randomized design (CRD). Factor A was 2 levels of protein sources yeast fermented cassava chip protein (YEFECAP) and soybean meal (SBM) and factor B was 5 levels of roughage to concentrate (R:C) ratio at 80:20, 60:40, 40:60, 20:80, and 0:100, respectively. Rice straw was used as a roughage source. It was found that gas production from the insoluble fraction (b) of YEFECAP supplemented group was significantly higher (p<0.05) than those in SBM supplemented group. Moreover, the intercept value (a), gas production from the insoluble fraction (b), gas production rate constants for the insoluble fraction (c), potential extent of gas production (a+b) and cumulative gas production at 96 h were influenced (p<0.01) by R:C ratio. In addition, protein source had no effect (p>0.05) on ether in vitro digestibility of dry matter (IVDMD) and organic (IVOMD) while R:C ratio affected the IVDMD and IVOMD (p<0.01). Moreover, YEFECAP supplanted group showed a significantly increased (p<0.05) total VFA and C3 while C2, C2:C3 and CH4 production were decreased when compared with SBM supplemented group. In addition, a decreasing R:C ratio had a significant effect (p<0.05) on increasing total VFA, C3 and NH3-N, but decreasing the C2, C2:C3 and CH4 production (p<0.01). Furthermore, total bacteria, Fibrobacter succinogenes, Ruminococcus flavefaciens and Ruminococcus albus populations in YEFECAP supplemented group were significantly higher (p<0.05) than those in the SBM supplemented group while fungal zoospores, methanogens and protozoal population remained unchanged (p>0.05) as compared between the two sources of protein. Moreover, fungal zoospores and total bacteria population were significantly increased (p<0.01) while, F. succinogenes, R. flavefaciens, R. albus, methanogens and protozoal population were decreased (p<0.01) with decreasing R:C ratio. In conclusion, YEFECAP has a potential for use as a protein source for improving rumen fermentation efficiency in ruminants.
机译:这项研究的目的是使用产气技术确定蛋白质来源和粗饲料(R)与浓缩物(C)比例对体外发酵参数的影响。实验设计是完全随机设计(CRD)中的2×5析因排列。因子A是2种蛋白质水平的酵母发酵木薯片蛋白质(YEFECAP)和豆粕(SBM),因子B是5种粗饲料与浓缩物(R:C)的比率,分别为80:20、60:40、40:60 ,20:80和0:100。稻草被用作粗饲料的来源。发现补充YEFECAP的组的不溶性部分(b)的产气量显着高于补充SBM的组(p <0.05)。此外,影响截距值(a),不溶性馏分的产气量(b),不溶性馏分的产气率常数(c),潜在的产气量(a + b)和96 h的累积产气量(R <C)(p <0.01)。此外,蛋白质来源对乙醚的干物质(IVDMD)和有机物(IVOMD)体外消化率没有影响(p> 0.05),而R:C比影响IVDMD和IVOMD(p <0.01)。此外,与补充SBM的组相比,YEFECAP替代组的总VFA和C3显着增加(p <0.05),而C2,C2:C3和CH4的产生减少。此外,降低的R:C比对增加总VFA,C3和NH3-N有显着影响(p <0.05),但会降低C2,C2:C3和CH4的产生(p <0.01)。此外,YEFECAP补充组的细菌总数,琥珀酸根瘤菌,黄褐球菌和白色球菌的数量显着高于SBM补充组(p <0.05),而真菌游动孢子,产甲烷菌和原生动物的数量则保持不变(p> 0.05)。在两种蛋白质来源之间。此外,随着R:C比例的降低,真菌游动孢子和细菌总数均显着增加(p <0.01),而琥珀色拟杆菌,黄曲霉,黄粉虫,产甲烷菌和原生动物种群减少(p <0.01)。总之,YEFECAP有潜力用作提高反刍动物瘤胃发酵效率的蛋白质来源。

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