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鸡肠道微生物培养及其作为益生菌开发的潜在应用。

Culturing the Chicken Intestinal Microbiota and Potential Application as Probiotics Development.

机构信息

Key Laboratory of Zoonosis Research, Ministry of Education, College of Veterinary Medicine, Jilin University, Changchun 130012, China.

出版信息

Int J Mol Sci. 2023 Feb 3;24(3):3045. doi: 10.3390/ijms24033045.

Abstract

Pure cultures of chicken intestinal microbial species may still be crucial and imperative to expound on the function of gut microbiota, and also contribute to the development of potential probiotics and novel bioactive metabolites from gut microbiota. In this study, we isolated and identified 507 chicken intestinal bacterial isolates, including 89 previously uncultured isolates. Among these, a total of 63 strains, belonging to , , , , , and , exhibited antibacterial activity against . Acid tolerance tests showed strain YPG14 ( strain YPG14) has a particularly strong tolerance to acid. We further characterized other probiotic properties of strain YPG14. In simulated intestinal fluid, the growth of strain YPG14 remained stable after incubation for 4 h. The auto-aggregation test showed the auto-aggregation percentage of strain YPG14 was recorded as 15.0  ±  0.38%, 48.3  ±  2.51%, and 75.1  ±  4.44% at 3, 12, and 24 h, respectively. In addition, the mucin binding assay showed strain YPG14 exhibited 12.07 ±  0.02% adhesion to mucin. Antibiotic sensitivity testing showed that strain YPG14 was sensitive to the majority of the tested antibiotics. The anti- Pullorum (. Pullorum) infection effect in vivo revealed that the consumption of strain YPG14 could significantly improve body weight loss and survival rate of chicks infected by . Pullorum; reduce the loads of . Pullorum in the jejunum, liver, spleen, and feces; and alleviate the jejunum villi morphological structure damage, crypt loss, and inflammatory cell infiltration caused by . Pullorum. Overall, this study may help us to understand the diversity of chicken intestinal microflora and provide some insights for potential probiotic development from gut microbiota and may find application in the poultry industry.

摘要

纯培养的鸡肠道微生物物种对于阐述肠道微生物群的功能仍然至关重要和必要,并且有助于从肠道微生物群中开发潜在的益生菌和新型生物活性代谢物。在这项研究中,我们分离和鉴定了 507 株鸡肠道细菌分离株,其中包括 89 株以前未培养的分离株。在这些分离株中,共有 63 株属于 、 、 、 、 和 ,对 表现出抗菌活性。耐酸试验表明,菌株 YPG14(菌株 YPG14)对酸具有特别强的耐受性。我们进一步表征了菌株 YPG14 的其他益生菌特性。在模拟肠液中,菌株 YPG14 的生长在孵育 4 小时后保持稳定。自聚集试验显示,菌株 YPG14 的自聚集率分别为 15.0 ± 0.38%、48.3 ± 2.51%和 75.1 ± 4.44%,在 3、12 和 24 小时时。此外,粘蛋白结合试验显示,菌株 YPG14 对粘蛋白的粘附率为 12.07 ± 0.02%。抗生素敏感性试验表明,菌株 YPG14 对大多数测试的抗生素敏感。体内抗鸡白痢(鸡白痢)感染效果表明,消耗菌株 YPG14 可显著改善鸡白痢感染雏鸡的体重减轻和存活率;减少空肠、肝脏、脾脏和粪便中鸡白痢的负荷;并缓解鸡白痢引起的空肠绒毛形态结构损伤、隐窝缺失和炎症细胞浸润。总体而言,这项研究可能有助于我们了解鸡肠道微生物群的多样性,并为从肠道微生物群中开发潜在的益生菌提供一些见解,并可能在家禽业中得到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69c4/9917885/2261944d5e4f/ijms-24-03045-g006.jpg

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