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Biodegradation of Ochratoxin A by Bacterial Strains Isolated from Vineyard Soils

机译:葡萄园土壤中分离的细菌菌株对O曲霉毒素A的生物降解作用

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Ochratoxin A (OTA) is a mycotoxin with a main nephrotoxic activity contaminating several foodstuffs. In the present report, five soil samples collected from OTA-contaminated vineyards were screened to isolate microorganisms able to biodegrade OTA. When cultivated in OTA-supplemented medium, OTA was converted in OTα by 225 bacterial isolates. To reveal clonal relationships between isolates, molecular typing by using an automated rep-PCR system was carried out, thus showing the presence of 27 different strains (rep-PCR profiles). The 16S-rRNA gene sequence analysis of an isolate representative of each rep-PCR profiles indicated that they belonged to five bacterial genera, namely Pseudomonas, Leclercia, Pantoea, Enterobacter, and Acinetobacter. However, further evaluation of OTA-degrading activity by the 27 strains revealed that only Acinetobacter calcoaceticus strain 396.1 and Acinetobacter sp. strain neg1, consistently conserved the above property; their further characterization showed that they were able to convert 82% and 91% OTA into OTα in six days at 24 °C, respectively. The presence of OTα, as the unique OTA-degradation product was confirmed by LC-HRMS. This is the first report on OTA biodegradation by bacterial strains isolated from agricultural soils and carried out under aerobic conditions and moderate temperatures. These microorganisms might be used to detoxify OTA-contaminated feed and could be a new source of gene(s) for the development of a novel enzymatic detoxification system.
机译:ch曲霉毒素A(OTA)是一种霉菌毒素,具有主要的肾毒性活性,可污染几种食品。在本报告中,筛选了从受OTA污染的葡萄园收集的五个土壤样品,以分离能够生物降解OTA的微生物。当在补充有OTA的培养基中培养时,OTA被225种细菌分离株转化为OTα。为了揭示分离株之间的克隆关系,使用自动化的rep-PCR系统进行了分子分型,从而显示了27种不同菌株的存在(rep-PCR图谱)。代表每个rep-PCR图谱的分离物的16S-rRNA基因序列分析表明,它们属于五个细菌属,即假单胞菌,勒克勒西亚,泛菌,肠杆菌和不动杆菌。但是,对27株OTA降解活性的进一步评估表明,只有钙乙酸不动杆菌菌株396.1和不动杆菌属sp。 neg1株,始终保持上述特性;他们的进一步表征表明,他们能够在24°C的六天内分别将82%和91%的OTA转化为OTα。 LC-HRMS证实了作为独特的OTA降解产物的OTα的存在。这是关于从农业土壤中分离并在有氧条件和中等温度下进行的OTA生物降解的第一份报告。这些微生物可用于对受OTA污染的饲料进行解毒,并可作为开发新型酶解毒系统的新基因来源。

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