Samapundo S, Devlieghere F, Geeraerd A H, De Meulenaer B, Van Impe J F, Debevere J
Laboratory of Food Microbiology and Food Preservation, Department of Food Safety and Food Quality, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000 Gent, Belgium.
Food Microbiol. 2007 Aug;24(5):517-29. doi: 10.1016/j.fm.2006.07.021. Epub 2006 Oct 25.
A full factorial design of five temperatures (16, 22, 25, 30 and 37 degrees C) and seven a(w) values between 0.801 and 0.982 was used to investigate the growth of the two major aflatoxin producing Aspergillus isolates on corn. The colony growth rates (g, mmd(-1)) and lag phases (lambda, d) were estimated by fitting a flexible primary growth model. Subsequently, secondary models relating g or lambda to a(w) or temperature or a(w) and temperature combined, were developed and validated by using independently collected data. The Gibson and linear Arrhenius-Davey model describing the individual effects of a(w) or temperature on g or lambda proved an adequate predictor of either growth parameter. Based on the validation criteria, a quadratic polynomial function proved to be more suitable than a Gaussian function or extended Davey model for describing the combined effect of a(w) and temperature on g or lambda. Both isolates studied had optimum growth temperatures of approximately 30 degrees C. No growth was observed for both isolates at a(w) 0.801, growth only occurring at 25 and 30 degrees C at a(w) 0.822. Significant interaction between a(w) and temperature on g and lambda was observed for both isolates. The developed models can be applied in the preservation of corn and the development of models that incorporate other factors important to mould growth on corn.
采用五温度(16、22、25、30和37摄氏度)和七个介于0.801至0.982之间的水分活度值的全因子设计,研究两种主要产黄曲霉毒素的曲霉菌株在玉米上的生长情况。通过拟合一个灵活的初级生长模型来估计菌落生长速率(g,mm d⁻¹)和延迟期(λ,d)。随后,利用独立收集的数据建立并验证了将g或λ与水分活度、温度或水分活度与温度组合相关联的二级模型。描述水分活度或温度对g或λ的单独影响的吉布森模型和线性阿累尼乌斯 - 戴维模型被证明是这两个生长参数的充分预测模型。基于验证标准,二次多项式函数被证明比高斯函数或扩展戴维模型更适合描述水分活度和温度对g或λ的联合影响。所研究的两种菌株的最佳生长温度均约为30摄氏度。在水分活度为0.801时,两种菌株均未观察到生长,在水分活度为0.822时,仅在25和30摄氏度下生长。两种菌株在水分活度和温度对g和λ的影响上均观察到显著的相互作用。所建立的模型可应用于玉米的保鲜以及包含对玉米上霉菌生长重要的其他因素的模型的开发。