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从肉种鸡小肠中分离出的[具体物质1]、[具体物质2]和[具体物质3]的体外特性及安全性评估

In Vitro Characterization and Safety Assessment of , and Isolated from the Small Intestine of Broiler Breeders.

作者信息

Kokwe Nwabisa Happiness, Tshabuse Freedom, Swalaha Feroz Mahomed

机构信息

Department of Biotechnology and Food Science, Durban University of Technology, Durban 4001, South Africa.

Department of Biochemistry and Microbiology, University of Zululand, KwaDlangezwa 3886, South Africa.

出版信息

Microorganisms. 2025 May 27;13(6):1231. doi: 10.3390/microorganisms13061231.

Abstract

In poultry production, antibiotics have been excessively used as growth promoters to support well-being and decrease mortality caused by pathogenic microorganisms. The overuse of antibiotics has led to the emergence of antibiotic-resistant bacteria and the presence of antibiotic residues in poultry products. To counteract this problem, probiotics could be used as adjuncts or as substitutes for preserving a diverse and balanced microflora to prevent the colonization and multiplication of pathogenic bacteria in the GI tract. This study aimed to isolate and characterize the potential probiotic properties of lactic acid bacteria from the small intestine of 23-week-old broiler breeders, with the goal of identifying potential probiotic candidates. Four phenotypically healthy broiler breeders were selected, and intestinal contents were aseptically collected and cultured on MRS agar. From the initial pool of 39 colonies, six isolates were identified based on Gram-positive and catalase-negative characteristics and further classified using 16S rRNA sequencing as ( = 3), ( = 2), and ( = 1). These strains were further evaluated for probiotic properties such as transit resistance to simulated upper gastrointestinal conditions, antagonist activity, haemolytic activity, and cell surface properties such as autoaggregation, co-aggregation and hydrophobicity, . NKFS8 showed good tolerance to pH 3, while NKSF10 exhibited good tolerance to pH 4 acidic conditions. All isolates demonstrated good survivability in bile salt concentration of 3% (/), with NKSF10 exhibiting the highest tolerance. The isolates showed a wide range of antagonistic activity against the test pathogens (ATCC 27853), , (ATCC 13314), (ATCC 29213), and (ATCC 7644). Furthermore, these strains exhibited good auto-aggregation, co-aggregation, and hydrophobicity properties. In conclusion, lactic acid bacteria from the small intestine of broiler breeders present a valuable prospect for the development of effective probiotics. These probiotics can be utilized as a supplementary inclusion in poultry feed, obviating the need for antibiotics as growth promoters. Nevertheless, additional in vivo studies are required to closely monitor and assess the effects of probiotics on the gastrointestinal system of chickens.

摘要

在家禽生产中,抗生素被过度用作生长促进剂,以维持家禽健康并降低由病原微生物引起的死亡率。抗生素的过度使用导致了抗生素耐药菌的出现以及家禽产品中抗生素残留的存在。为了解决这个问题,益生菌可用作辅助剂或替代品,以维持多样化和平衡的微生物群,防止病原菌在胃肠道定植和繁殖。本研究旨在分离和鉴定23周龄肉种鸡小肠中乳酸菌的潜在益生菌特性,以确定潜在的益生菌候选菌株。选择了四只表型健康的肉种鸡,无菌采集肠道内容物并在MRS琼脂上培养。从最初的39个菌落中,根据革兰氏阳性和过氧化氢酶阴性特征鉴定出6株分离株,并通过16S rRNA测序进一步分类为( = 3)、( = 2)和( = 1)。对这些菌株的益生菌特性进行了进一步评估,如对模拟上消化道条件的转运抗性、拮抗活性、溶血活性以及细胞表面特性,如自聚集、共聚集和疏水性。NKFS8对pH 3表现出良好的耐受性,而NKSF10对pH 4酸性条件表现出良好的耐受性。所有分离株在3%(/)的胆盐浓度下均表现出良好的生存能力,其中NKSF10表现出最高的耐受性。这些分离株对测试病原菌(ATCC 27853)、、(ATCC 13314)、(ATCC 29213)和(ATCC 7644)表现出广泛的拮抗活性。此外,这些菌株表现出良好的自聚集、共聚集和疏水性特性。总之,肉种鸡小肠中的乳酸菌在开发有效的益生菌方面具有宝贵的前景。这些益生菌可作为家禽饲料的补充成分,从而无需使用抗生素作为生长促进剂。然而,还需要进行额外的体内研究,以密切监测和评估益生菌对鸡胃肠道系统的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/085c/12195246/4ea52916f474/microorganisms-13-01231-g001.jpg

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