Van den Abbeele Pieter, Ghyselinck Jonas, Marzorati Massimo, Koch Anna-Maria, Lambert William, Michiels Joris, Chalvon-Demersay Tristan
ProDigest, 9052 Ghent, Belgium.
Cryptobiotix, 9052 Ghent, Belgium.
Microorganisms. 2022 Mar 31;10(4):762. doi: 10.3390/microorganisms10040762.
Functional amino acids supplementation to farm animals is considered to not only be beneficial by regulating intestinal barrier, oxidative stress, and immunity, but potentially also by impacting the gut microbiota. The impact of amino acids on a piglet-derived colonic microbiota was evaluated using a 48-h in vitro batch incubation strategy. The combination of 16S rRNA gene profiling with flow cytometry demonstrated that specific microbial taxa were involved in the fermentation of each of the amino acids resulting in the production of specific metabolites. Branched chain amino acids (leucine, isoleucine, valine) strongly increased branched-chain fatty acids (+23.0 mM) and valerate levels (+3.0 mM), coincided with a marked increase of . Further, glutamine and glutamate specifically stimulated acetate (20 mM) and butyrate (10 mM) production, relating to a stimulation of a range of families containing known butyrate-producing species (, and ). Finally, while tryptophan was only fermented to a minor extent, arginine and lysine specifically increased propionate levels (~2 mM), likely produced by members. Overall, amino acids were thus shown to be selectively utilized by microbes originating from the porcine colonic microbiota, resulting in the production of health-related short-chain fatty acids, thus confirming the prebiotic potential of specific functional amino acids.
向农场动物补充功能性氨基酸不仅被认为通过调节肠道屏障、氧化应激和免疫力有益,而且可能还通过影响肠道微生物群发挥作用。使用48小时体外批次培养策略评估了氨基酸对仔猪源结肠微生物群的影响。16S rRNA基因分析与流式细胞术相结合表明,特定的微生物类群参与了每种氨基酸的发酵,从而产生特定的代谢产物。支链氨基酸(亮氨酸、异亮氨酸、缬氨酸)显著增加了支链脂肪酸(增加23.0 mM)和戊酸水平(增加3.0 mM),同时伴随着 的显著增加。此外,谷氨酰胺和谷氨酸特异性刺激乙酸盐(约20 mM)和丁酸盐(约10 mM)的产生,这与一系列含有已知产丁酸盐物种( 、 和 )的菌科的刺激有关。最后,虽然色氨酸仅在较小程度上被发酵,但精氨酸和赖氨酸特异性增加了丙酸盐水平(约2 mM),可能由 成员产生。总体而言,结果表明氨基酸被源自猪结肠微生物群的微生物选择性利用,从而产生与健康相关的短链脂肪酸,从而证实了特定功能性氨基酸的益生元潜力。