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Comparative study of growth responses and screening of inter-specific OTA production kinetics by A. carbonarius isolated from grapes

机译:从葡萄中分离出的碳假单胞菌对生长应答和种间OTA产生动力学筛选的比较研究

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摘要

The aim of this work was to assess OchratoxinA (OTA) production of different Aspergillus carbonarius isolates, evaluate their growth profile through different growth measurements, and reveal any underlying correlation between them. Ten different isolates of A. carbonarius isolated from Greek vineyards located in different geographical regions were examined in vitro for their OTA production potential after an incubation period of up to 11 days. All fungal isolates grew on a synthetic grape juice medium (SGM) similar to grape composition at optimum conditions of temperature and water activity (25°C and 0.98 aw). Samples for OTA determination were removed at 3, 5, 7, 9, and 11 days of growth and analyzed by HPLC. Based on OTA measurements the isolates were characterized by diverse OTA production ranging from 50 to 2000 ppb at day 11. The different fungal growth responses (colony diameter, colony area, biomass, biomass dry weight, and colony density) have been measured and correlated with toxin production by means of principal components analysis (PCA), confirming satisfactory correlation and explained over 99% of data variability. Leudeking-Piret model was also used to study OTA production with time, revealing a mixed-growth associated trend and pointing a fail-safe model with slightly better prediction through colony area. This approach contributes to the assessment of correlation between mycotoxin production and different methods of fungal growth determination in relation to time.
机译:这项工作的目的是评估不同碳曲霉分离株的ch曲霉毒素(OTA)产生,通过不同的生长测量评估其生长概况,并揭示它们之间的任何潜在相关性。在长达11天的潜伏期后,对来自不同地理区域的希腊葡萄园的十种不同的碳曲霉菌株进行了OTA生产潜力的体外检测。所有真菌分离物均在类似于葡萄组成的合成葡萄汁培养基(SGM)上,在最佳温度和水活度(25°C和0.98 aw)条件下生长。在生长的第3、5、7、9和11天取出用于OTA测定的样品,并通过HPLC分析。根据OTA测量,分离株的特征在于在第11天的OTA产量范围从50到2000 ppb不等。已测量了不同的真菌生长响应(菌落直径,菌落面积,生物量,生物量干重和菌落密度),并与通过主成分分析(PCA)进行毒素生产,确认了令人满意的相关性,并解释了超过99%的数据变异性。 Leudeking-Piret模型还用于研究随时间变化的OTA产量,揭示了混合增长相关趋势,并指出了故障安全模型,该模型在整个菌落区域中的预测都略好。这种方法有助于评估真菌毒素的产生与确定真菌生长的不同方法之间的时间相关性。

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