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首页> 外文期刊>World Mycotoxin Journal >Effect of water activity and temperature on growth of Aspergillus carbonarius and Aspergillus tubingensis and their interactions on ochratoxin A production
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Effect of water activity and temperature on growth of Aspergillus carbonarius and Aspergillus tubingensis and their interactions on ochratoxin A production

机译:水分活度和温度对碳曲霉和油曲霉生长的影响及其对och曲霉毒素A产生的相互作用

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Aspergillus section Nigri are described as the main source of ochratoxin A (OTA) contamination in grapes and wine worldwide. The grape-growing area in Argentina has a wide latitudinal extension with ecological variations that allow the classification of well-demarcated regions. The aims of this study were: to determine the effect of eco-physiological parameters on growth of Aspergillus tubingensis and Aspergillus carbonarius and to evaluate the interaction between these species on OTA production in synthetic grape juice medium under different water activity (a(w)) and temperature conditions. The results showed that optimal growth conditions for A. tubingensis and A. carbonarius were 0.980 a(w) and 28 degrees C, however A. tubingensis grew faster than A. carbonarius at all temperatures and a(w) tested. OTA production by A. carbonarius was favoured at 20 degrees C and 0.950-0.965 a(w), during 14 days of incubation. The effect of A. tubingensis on OTA production by A. carbonarius was mainly dependent on temperature. At 35 degrees C, A. tubingensis reduced the OTA production while this effect was not observed at 20 degrees C. More OTA could be produced as a defence reaction against fungal competitors to maintain niche colonisation, but in this study no effects by a related species were observed.
机译:Nigri曲霉部分被描述为全球葡萄和葡萄酒中曲毒素A(OTA)污染的主要来源。阿根廷的葡萄种植区具有宽广的纬度延伸范围和生态变化,可以对界限分明的地区进行分类。这项研究的目的是:确定生态生理参数对油曲霉和碳曲霉生长的影响,并评估这些物种之间在不同水分活度下对合成葡萄汁培养基中OTA产生的相互作用(a(w))和温度条件。结果表明,油曲霉和碳假单胞菌的最佳生长条件是0.980 a(w)和28摄氏度,但是在所有温度和测试的a(w)下,油曲霉的生长都比碳假单胞菌快。在孵化14天期间,在20摄氏度和0.950-0.965 a(w)的条件下,A。carbonarius的OTA生产受到青睐。油曲霉对碳假单胞菌OTA产生的影响主要取决于温度。在35摄氏度时,油曲霉降低了OTA的产生,而在20摄氏度时未观察到这种作用。可以产生更多的OTA作为对真菌竞争者的防御反应,以维持生态位定殖,但是在这项研究中,相关物种没有任何作用被观察。

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