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OTA Prevention and Detoxification by Actinobacterial Strains and Activated Carbon Fibers: Preliminary Results

机译:放线菌菌株和活性炭纤维预防OTA和排毒的初步结果

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摘要

Ochratoxin A (OTA) is a mycotoxin produced by several species of Aspergillus and Penicillium that contaminate food and feed raw materials. To reduce OTA contamination, we first tested in vitro, actinobacterial strains as potential biocontrol agents and afterward, through a physical decontamination method using activated carbon fibers (ACFs). Actinobacterial strains were screened for their ability to reduce OTA in solid co-culture with A. carbonarius, which is the major OTA-producing species in European vineyards. Four strains showed a high affinity for removing OTA (67%–83%) with no significant effect on fungal growth (<20%). The mechanism of action was first studied by analyzing the expression of OTA cluster genes (acOTApks, acOTAnrps, acOTAhal) by RT-qPCR showing a drastic reduction in all genes (7–15 times). Second, the ability of these strains to degrade OTA was assessed in vitro on ISP2 solid medium supplemented with OTA (100 µg/L). Two strains reduced OTA to undetectable levels. As for the physical method, high adsorption rates were obtained for ACFs at 0.8 g/L with a 50% adsorption of OTA in red wine by AC15 and 52% in grape juice by AC20 within 24 h. These promising methods could be complementarily applied toward reducing OTA contamination in food chains, which promotes food safety and quality.
机译:ch曲霉毒素A(OTA)是一种霉菌毒素,由数种曲霉菌和青霉菌产生,它们污染了食品和饲料原料。为了减少OTA污染,我们首先在体外测试了放线杆菌菌株作为潜在的生物防治剂,然后通过使用活性炭纤维(ACF)的物理去污方法进行了测试。筛选了放线菌菌株在与碳黑曲霉的固体共培养中减少OTA的能力,而碳黑曲霉是欧洲葡萄园中主要的OTA产生品种。四种菌株对去除OTA具有很高的亲和力(67%–83%),而对真菌的生长没有显着影响(<20%)。首先通过RT-qPCR分析OTA簇基因(acOTApks,acOTAnrps,acOTAhal)的表达来研究其作用机理,结果表明所有基因均大幅减少(7至15倍)。其次,在补充有OTA(100 µg / L)的ISP2固体培养基上体外评估了这些菌株降解OTA的能力。两种菌株将OTA降至无法检测的水平。至于物理方法,ACF在0.8 g / L时获得了高吸附率,其中AC15在红酒中OTA的吸附率为50%,AC20在葡萄汁中的吸附率为52%,在24小时内。这些有前途的方法可以互补地应用于减少食物链中的OTA污染,从而提高食品安全性和质量。

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