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Alteration of the Canine Small-Intestinal Lactic Acid Bacterium Microbiota by Feeding of Potential Probiotics

机译:饲喂潜在益生菌对犬小肠乳酸菌微生物群的改变

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Five potentially probiotic canine fecal lactic acid bacterium (LAB) strains, Lactobacillus fermentum LAB8, Lactobacillus salivarius LAB9, Weissella confusa LAB10, Lactobacillus rhamnosus LAB11, and Lactobacillus mucosae LAB12, were fed to five permanently fistulated beagles for 7 days. The survival of the strains and their potential effects on the indigenous intestinal LAB microbiota were monitored for 17 days. Denaturing gradient gel electrophoresis (DGGE) demonstrated that the five fed LAB strains survived in the upper gastrointestinal tract and modified the dominant preexisting indigenous jejunal LAB microbiota of the dogs. When the LAB supplementation was ceased, DGGE analysis of jejunal chyme showed that all the fed LAB strains were undetectable after 7 days. However, the diversity of the intestinal indigenous microbiota of the dogs, as characterized from jejunal chyme plated on Lactobacillus selective medium without acetic acid, was reduced and did not return to the original level during the study period. In all but one dog, an indigenous Lactobacillus acidophilus strain emerged as the dominant LAB strain. In conclusion, strains LAB8 to LAB12 have potential as probiotic strains for dogs as they survive in and dominate the jejunal LAB microbiota during feeding and have the ability to modify the intestinal microbiota.
机译:将五种可能的益生犬粪便乳酸菌(LAB)菌株,发酵乳杆菌LAB8,唾液乳杆菌LAB9,Weissella confusa LAB10,鼠李糖乳杆菌LAB11和粘膜乳杆菌LAB12喂食到五只永久性瘘管的小猎犬中,持续7天。监测菌株的存活及其对本地肠道LAB微生物群的潜在影响,持续17天。变性梯度凝胶电泳(DGGE)表明,这五只喂食的LAB菌株在上消化道中存活,并修饰了犬中主要存在的原生空肠LAB菌群。当停止补充LAB时,对空肠食糜的DGGE分析表明,所有喂食的LAB菌株在7天后都无法检测到。然而,在研究期间,以空肠食糜接种在无乙酸的乳酸杆菌选择性培养基上为特征的狗肠道固有菌群的多样性降低了,并且没有恢复到原始水平。在除一只狗之外的所有狗中,均出现了本地嗜酸乳杆菌菌株作为主要的LAB菌株。总之,菌株LAB8至LAB12具有作为犬用益生菌菌株的潜力,因为它们在进食过程中可在空肠LAB菌群中存活并占主导地位,并具有修饰肠道菌群的能力。

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