Application of the Biolog® Identification System for Aflatoxin-Producing Fungi Associated with Maize (Zea mays L.) Contamination in Romania

I. Smeu, Elena Mirela Cucu, A. Dobre, H. Casian
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Abstract

Cereals are very susceptible to fungal attacks. Fungi have a unique biochemical pathway to assimilate a vast array of available substrates and produce toxic secondary metabolites, such as mycotoxins, which represent a clear public health concern. In this context, a maize survey was conducted in order to assess the diversity of mycotoxin-producing fungi. Low levels of total aflatoxins, acceptable by the European Union, were detected in maize samples. A semi-automated Biolog® Microbial Identification System was used for the identification of the fungal strains. Enzyme-linked immunosorbent assay (ELISA) was used for the quantification of total aflatoxins. The results indicated that Fusarium udum and Rhizopus oryzae were the prevalent fungi for the assessed maize samples, while both control and treated samples showed low levels of total aflatoxins, which did not exceed 1.5 μg kg-1. The registered total aflatoxin concentrations were consistent with the European regulations.
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玉米产黄曲霉毒素真菌(Zea mays L.)生物学鉴定系统的应用罗马尼亚的污染
谷物很容易受到真菌的侵袭。真菌有一种独特的生物化学途径,可以吸收大量可用的底物,并产生有毒的次级代谢产物,如真菌毒素,这是一个明显的公共健康问题。在这种情况下,进行了一项玉米调查,以评估产生真菌毒素的真菌的多样性。在玉米样品中检测到的黄曲霉毒素总量低,为欧盟所接受。使用半自动Biolog®微生物鉴定系统对真菌菌株进行鉴定。酶联免疫吸附试验(ELISA)用于黄曲霉毒素总量的定量。结果表明,镰刀菌和米根霉是评估玉米样品的主要真菌,而对照和处理样品的黄曲霉毒素含量均较低,不超过1.5μg kg-1。登记的黄曲霉毒素总浓度符合欧洲法规。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
8 weeks
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