首页> 外文期刊>Journal of applied microbiology >Effects of aromatic amino acids, phenylacetate and phenylpropionate on fermentation of xylan by the rumen anaerobic fungi, Neocallimastix frontalis and Piromyces communis
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Effects of aromatic amino acids, phenylacetate and phenylpropionate on fermentation of xylan by the rumen anaerobic fungi, Neocallimastix frontalis and Piromyces communis

机译:芳香族氨基酸,乙酸苯酯和苯丙酸对瘤胃厌氧真菌,额叶新callimastix和小菜蛾的木聚糖发酵的影响

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Aims: Anaerobic fungi are important members of the fibrolytic community of the rumen. The aim of this study was to study their requirement for aromatic amino acids (AA) and related phenyl acids (phenylpropionic and phenylacetic acids) for optimal xylan fermentation. Methods and Results: Neocallimastix frontalis RE1 and Piromyces communis P were grown in a defined medium containing oat spelts xylan as the sole energy source, plus one of the following N sources: ammonia; ammonia plus a complete mixture of 20 AA commonly found in protein; ammonia plus complete AA mixture minus aromatic AA; ammonia plus phenyl acids; ammonia plus complete AA mixture without aromatic AA plus phenyl acids. Both species grew in all the media, indicating no absolute requirement for AA. The complete AA mixture increased (P < 0.05) acetate concentration by 18% and 15%, sugar utilization by 33% and 22% and microbial yield by about 22% and 15% in N. frontalis and P. communis, respectively, in comparison with the treatments that had ammonia as the only N source. Neither the supply of aromatic AA or phenol acids, nor their deletion from the complete AA mixture, affected the fermentation rate, products or yield of either species. Conclusions: AA were not essential for N. frontalis and P. communis, but their growth on xylan was stimulated. The effects could not be explained in terms of aromatic AA alone. Significance and Impact of the Study: Ruminant diets should contain sufficient protein to sustain optimal fibre digestion by ruminal fungi. Aromatic AA or phenyl acids alone cannot replace the complete AA mixture.
机译:目的:厌氧真菌是瘤胃纤溶组织的重要成员。这项研究的目的是研究其对芳香族氨基酸(AA)和相关的苯甲酸(苯丙酸和苯乙酸)的需求,以实现最佳的木聚糖发酵。方法和结果:新额叶羊callRE1和Piromyces communis P在限定的培养基中生长,该培养基含有燕麦球茎木聚糖作为唯一能源,以及以下N种来源之一:氨;氨水和蛋白质中常见的20 AA的完全混合物;氨加完全的AA混合物减去芳族AA;氨加苯酸;氨水加上完全的AA混合物,不含芳香族AA和苯酸。两种物种都在所有培养基中生长,表明对AA的绝对需求不大。与之相比,完整的AA混合物分别使额叶猪笼草和小菜蛾的醋酸盐浓度分别提高(P <0.05)18%和15%,糖利用率33%和22%和微生物产量分别约22%和15%。用氨作为唯一氮源的处理。芳香族AA或酚酸的供应,或它们从完整AA混合物中的缺失,都不会影响任何一种的发酵速率,产物或产量。结论:AA对额叶猪笼草和公共对虾不是必需的,但是它们在木聚糖上的生长受到了刺激。不能仅以芳族AA来解释其影响。研究的意义和影响:反刍动物的饮食中应含有足够的蛋白质,以维持瘤胃真菌对纤维的最佳消化。单独的芳族AA或苯甲酸不能替代完整的AA混合物。

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