Biocontrol efficacy of Lactobacillus fermentum YML014 against food spoilage moulds using the tomato puree model

Q1 Biochemistry, Genetics and Molecular Biology
Elizabeth O. Adedokun, I. Rather, V. Bajpai, Yong-Ha Park
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引用次数: 22

Abstract

ABSTRACT Food-spoilage moulds are known for their destructive rot and for the production of carcinogenic metabolites such as mycotoxins. These metabolities play a major role in the deterioration of the quality and hygiene of foodstuffs, resulting in economic loss and posing a critical threat to livestock and human. The current study evaluates the antifungal activity of an isolate, Lactobacillus fermentum YML014 isolated from Nigerian fermented food (Cassava). YML014 showed strong antifungal activity against Aspergillus niger, Aspergillus flavus, Penicillium expansum and reduced the fungal mycelia by ∼50% while co-cultivating in liquid medium. The strain exhibited heat stability and showed antifungal activity over a wide pH range of 4.0–8.0. The strain was sensitive to all of the clinically important antibiotics used. The biopreservative potential of YML014 was evaluated using tomato puree. Mycelial growth of P. expansum was observed in the negative control after 3 and 25 days of incubation at 25°C and 4°C, respectively. The shelf life of tomato puree treated with YML014 was extended for 12 days at 25°C and 9 days at 4°C. The strong antifungal potential of YML014 against food-spoilage moulds suggests its ability as a potent food preservative agent.
利用番茄泥模型研究发酵乳杆菌YML014对食品腐败霉菌的生物防治效果
摘要食物腐败霉菌以其破坏性腐烂和产生致癌代谢物(如真菌毒素)而闻名。这些代谢对食品质量和卫生的恶化起着重要作用,造成经济损失,并对牲畜和人类构成严重威胁。本研究评估了从尼日利亚发酵食品(木薯)中分离的发酵乳杆菌YML014的抗真菌活性。YML014对黑曲霉、黄曲霉、扩张青霉具有较强的抗真菌活性,在液体培养基中共培养时,真菌菌丝体减少约50%。菌株表现出热稳定性,并在4.0 ~ 8.0的较宽pH范围内表现出抗真菌活性。该菌株对临床使用的所有重要抗生素都敏感。利用番茄泥评价了YML014的生物保鲜潜力。在25°C和4°C条件下分别培养3天和25天后,观察阴性对照的菌丝生长情况。经YML014处理后的番茄酱在25℃下保质期延长12天,在4℃下保质期延长9天。YML014对食品腐败霉菌具有很强的抗真菌潜力,这表明它是一种有效的食品防腐剂。
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来源期刊
Frontiers in Life Science
Frontiers in Life Science MULTIDISCIPLINARY SCIENCES-
CiteScore
5.50
自引率
0.00%
发文量
0
期刊介绍: Frontiers in Life Science publishes high quality and innovative research at the frontier of biology with an emphasis on interdisciplinary research. We particularly encourage manuscripts that lie at the interface of the life sciences and either the more quantitative sciences (including chemistry, physics, mathematics, and informatics) or the social sciences (philosophy, anthropology, sociology and epistemology). We believe that these various disciplines can all contribute to biological research and provide original insights to the most recurrent questions.
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