Functional and molecular characterization of millet associated probiotic bacteria.

IF 4 2区 生物学 Q2 MICROBIOLOGY BMC Microbiology Pub Date : 2024-11-20 DOI:10.1186/s12866-024-03606-9
Bashipangu Gouthami, Alaguthevar Ramalakshmi, Murugesan Balakrishnan, Subburamu Karthikeyan, Iniyakumar Muniraj, Jeyakumar Saranya Packialakshmi
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Abstract

The lactic acid bacteria are one of the sustainable ways of food production. As the native lactic acid bacteria (LAB) easily manipulate the substrate, helps in production of health essential probiotics with enhancing the bioavailability of the substrate. Here also, in present study, the native LAB isolates isolated from the millets and characterize them for the functional analysis for the human health association. In the present study, fermented millet-associated lactic acid bacteria were screened and characterized for their probiotic potential, safety evaluation and antimicrobial activity. A total of 33 isolates were purified as lactic acid bacteria based on colony shape and biochemical assays. However, only 13 isolates were found to be catalase-negative. Among the 13 isolates, 5 isolates exhibited optimum growth at 6.5% and 9.5% of salt concentrations, pH of 4.5 to 8.5 and 17 °C to 40 °C of the temperature. The probiotic properties of the five isolates exhibited that the survival rates in acid and bile salt concentration ranged from 56.2 to 73.7% and 55.3 to 70.3%, respectively. Similarly, the surface hydrophobicity of the isolates was 41-75%. Antibiotic assay revealed that all five isolates were resistant to Amoxicillin, Cloxacillin, and Penicillin-V. Interestingly, all the isolates except ME26 displayed susceptibility towards Penicillin (2 units) and Tetracycline (10 µg). Further, the four isolates (ME25, ME26, ME9, and ME2) had more antifungal activity against Aspergillus flavus. However, only three, except ME1 and ME2, showed maximum antibacterial activity and produced more antimicrobial compounds compared to reference strain L. plantarum Pb3. The potential probiotic isolates were identified as Weisella cibaria ME9, Weisella cibaria ME26, and Weisella confusa ME25.

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小米相关益生菌的功能和分子特征。
乳酸菌是一种可持续的食品生产方式。本地乳酸菌(LAB)很容易处理基质,有助于生产对健康至关重要的益生菌,提高基质的生物利用率。在本研究中,也从黍米中分离出了本地乳酸菌,并对其进行了功能分析,以确定其与人类健康的关系。在本研究中,对发酵的黍米相关乳酸菌进行了筛选,并对其益生菌潜力、安全性评价和抗菌活性进行了表征。根据菌落形状和生化测定,共有 33 个分离物被纯化为乳酸菌。然而,只有 13 个分离物被发现是过氧化氢酶阴性的。在这 13 个分离物中,5 个分离物在盐浓度为 6.5% 和 9.5%、pH 值为 4.5 至 8.5 和温度为 17 °C 至 40 °C 的条件下表现出最佳生长状态。这 5 个分离物的益生特性表明,它们在酸和胆盐浓度下的存活率分别为 56.2% 至 73.7% 和 55.3% 至 70.3%。同样,分离物的表面疏水性为 41-75%。抗生素检测显示,所有五种分离物都对阿莫西林、氯唑西林和青霉素-V 具有抗药性。有趣的是,除 ME26 外,所有分离物都对青霉素(2 单位)和四环素(10 µg)有敏感性。此外,四种分离物(ME25、ME26、ME9 和 ME2)对黄曲霉具有更强的抗真菌活性。然而,与参考菌株 L. plantarum Pb3 相比,除 ME1 和 ME2 外,只有三个菌株显示出最大的抗菌活性,并产生了更多的抗菌化合物。经鉴定,这些潜在的益生菌分离物分别为西伯利亚魏氏菌 ME9、西伯利亚魏氏菌 ME26 和 confusa 魏氏菌 ME25。
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来源期刊
BMC Microbiology
BMC Microbiology 生物-微生物学
CiteScore
7.20
自引率
0.00%
发文量
280
审稿时长
3 months
期刊介绍: BMC Microbiology is an open access, peer-reviewed journal that considers articles on analytical and functional studies of prokaryotic and eukaryotic microorganisms, viruses and small parasites, as well as host and therapeutic responses to them and their interaction with the environment.
期刊最新文献
Retraction Note: A modified multilocus sequence typing protocol to genotype Kingella kingae from oropharyngeal swabs without bacterial isolation. Functional and molecular characterization of millet associated probiotic bacteria. The role of New World vultures as carriers of environmental antimicrobial resistance. Brain injury in premature infants may be related to abnormal colonization of early gut microbiome. Pseudomegasporoporia margallensis sp. nov. and Microporellus subadustus (Polyporaceae, Basidiomycota) newly described and recorded from Pakistan.
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