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首页> 外文期刊>Journal of Animal Physiology and Animal Nutrition >Comparison of bacterial pellets and microbial markers for the estimation of the microbial nitrogen and amino acids flows from single flow continuous culture fermenters fed diets containing two-stage olive cake
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Comparison of bacterial pellets and microbial markers for the estimation of the microbial nitrogen and amino acids flows from single flow continuous culture fermenters fed diets containing two-stage olive cake

机译:细菌粒料和微生物标记的比较估计微生物氮和氨基酸的流动从含有两级橄榄蛋糕的饮食中的单流连续培养发酵罐流动

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摘要

The effects of using effluent bacteria (EB) and solid- (SAB) and liquid- (LAB) associated bacteria and diaminopimelic acid (DAPA) or purine bases (PB) and partially substituting alfalfa hay (AH) by a concentrate including olive cake on the microbial N flow (MNF) and amino acids (AA) flow were investigated with continuous culture fermenters fed AH and a mixture of AH and a concentrate containing barley grains and two-stage olive cake (2:1 ratio) without (AHCO) or with polyethylene glycol (PEG) (AHCOP). The MNF was not different among diets with SAB or LAB (p = 0.302 and 0.203, respectively) and DAPA, but differed with PB (p = 0.021 and 0.014, respectively). With EB both markers detected similar differences, AHCOP showing a higher value (p < 0.05) than AH and AHCO. The MNF was higher (p < 0.001) with PB than DAPA. Daily flow of non-essential AA was not different (p = 0.356) among diets but essential AA flow was higher (p < 0.05) for AH and AHCOP than for AHCO. The SAB presented lower (p < 0.05) total AA than LAB and higher total AA (p < 0.05) for diet AH than AHCO. The AA profile of EB was similar to that of LAB, but alanine and leucine were higher (p < 0.05) in EB than in LAB. Microbial contribution to AA flow was 45.4%, 55.6% and 58.1% for diets AH, AHCO and AHCOP respectively. With both markers, microbial AA flow was higher (p < 0.05) for diet AHCOP compared with AH (451 and 355 mg/day, respectively), but not different (p > 0.05) for AHCOP and AHCO (389 mg/day). The results would indicate that olive cake could be used in the practical feeding of small ruminants without negatively affecting microbial AA N supply.
机译:使用流出物细菌(EB)和固体 - (SAB)和液体 - (实验室)相关细菌和二氨基菊酸(DAPA)或嘌呤碱(PB)的效果并部分地用浓缩物(包括橄榄蛋糕)的浓缩物(AH)代替使用连续培养发酵罐进行αh和含有大麦颗粒的浓缩物和浓缩物(2:1比)的混合物研究微生物N流(MNF)和氨基酸(AA)流动。没有(AHCO)或用聚乙二醇(PEG)(AHCOP)。 MNF与SAB或实验室的饮食中的饮食不同(分别为0.302和0.203)和DAPA,但分别与PB(P = 0.021和0.014)不同。通过EB,两种标记检测到类似的差异,AHCOP显示出比AH和AHCO更高的值(P <0.05)。 MNF高(P <0.001),PB比DAPA更高(p <0.001)。在饮食中,非必需AA的日常流动并不不同(p = 0.356),但是αa和ahcop的必要AA流量比AHCO更高(P <0.05)。 SAB呈下较低(P <0.05),比实验室和更高的饮食总AA(P <0.05)均为AH。 EB的AA型类似于实验室,但丙氨酸和亮氨酸比在实验室中更高(P <0.05)。对于饮食AH,AHCO和AHCOP的微生物对AA流量的贡献分别为45.4%,55.6%和58.1%。通过两个标记,微生物AA流量较高(P <0.05)饮食AHCOP与AH(分别为451和355mg /天),但对于AHCOP和AHCO(389mg /天)而不是不同(p> 0.05)。结果表明,橄榄饼可用于小反刍动物的实际饲养,而不会对微生物AA N供应产生负面影响。

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