In vitro detoxification of aflatoxin B1 by Lactiplantibacillus plantarum isolated from the north of Iran: A pioneering insights into the origin of fermented beverages.

IF 2.4 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Folia microbiologica Pub Date : 2024-12-30 DOI:10.1007/s12223-024-01234-4
Abdoljalil Eiri, Hami Kaboosi, Farhad Niknejad, Abdollah Ardebili, Hamid Reza Joshaghani
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Abstract

The contamination of food and animal feeds with mycotoxions, particularly aflatoxin B1 (AFB1), poses significant risks to human health and causes economic losses. This study investigated bacteria from various fermented milk products to assess their ability to detoxify AFB1. A variety of household fermented kefir milk, kefir-like beverages, and kefir grains were collected from rural areas and subjected to microbiological analysis. Gram-positive bacterial isolates were further identified based on the 16S rRNA gene homology analysis. Seven bacterial isolates that were initially identified as lactic acid bacteria were selected for their potential to detoxify AFB1. Effects of environmental factors, including temperature, time, pH, and cell concentration, as well as bacterial components such as inoculum, fermentation supernatant, and cells, were evaluated on AFB1 detoxification. The most frequent isolates belonged to the new genus Lentilactobacillus and Lactiplantibacillus, of which three strains were identified as L. kefiri, L. diolivorans, and L. plantarum. The selected L. plantarum isolate demonstrated optimal AFB1 detoxification at pH 4, a 4-h exposure time, and a cell concentration of 1.0 × 1016 CFU/mL. Significant differences were observed in toxin removal between fermentation supernatant and cells, while temperature showed no significant effect on toxin detoxification. This study demonstrated the high ability of L. plantarum for AFB1 detoxification, suggesting potential applications for food and feed safety enhancement. Further research is warranted to optimize its effectiveness and explore broader applications.

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从伊朗北部分离的植物乳杆菌体外解毒黄曲霉毒素B1:对发酵饮料起源的开创性见解。
霉菌毒素,特别是黄曲霉毒素B1 (AFB1)污染食品和动物饲料,对人类健康构成重大风险,并造成经济损失。本研究调查了各种发酵乳制品中的细菌,以评估它们解毒AFB1的能力。从农村地区收集了各种家用发酵开菲尔牛奶、类似开菲尔的饮料和开菲尔谷物,并进行了微生物分析。根据16S rRNA基因同源性分析进一步鉴定革兰氏阳性菌分离株。7种最初被鉴定为乳酸菌的细菌分离株被选中,因为它们具有解毒AFB1的潜力。评估环境因素(包括温度、时间、pH和细胞浓度)以及细菌成分(如接种量、发酵上清液和细胞)对AFB1解毒的影响。最常见的分离菌株为Lentilactobacillus和Lactiplantibacillus新属,其中鉴定出3株为L. kefiri、L. diolivorans和L. plantarum。所选植物乳杆菌分离物在pH为4、暴露时间为4 h、细胞浓度为1.0 × 1016 CFU/mL的条件下对AFB1脱毒效果最佳。发酵上清液和细胞对毒素的去除率存在显著差异,而温度对毒素的去除率无显著影响。本研究证明了植物乳杆菌对AFB1的高解毒能力,为提高食品和饲料的安全性提供了潜在的应用前景。有必要进一步研究以优化其有效性并探索更广泛的应用。
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来源期刊
Folia microbiologica
Folia microbiologica 工程技术-生物工程与应用微生物
CiteScore
5.80
自引率
0.00%
发文量
82
审稿时长
6-12 weeks
期刊介绍: Unlike journals which specialize ever more narrowly, Folia Microbiologica (FM) takes an open approach that spans general, soil, medical and industrial microbiology, plus some branches of immunology. This English-language journal publishes original papers, reviews and mini-reviews, short communications and book reviews. The coverage includes cutting-edge methods and promising new topics, as well as studies using established methods that exhibit promise in practical applications such as medicine, animal husbandry and more. The coverage of FM is expanding beyond Central and Eastern Europe, with a growing proportion of its contents contributed by international authors.
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