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Application of an interspecific competition model to predict the growth of Aeromonas hydrophila on fish surfaces during refrigerated storage

机译:种间竞争模型在冷藏过程中预测鱼类表面嗜水气单胞菌生长的应用

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摘要

The growth of Aeromonas hydrophila and the aerobic mesophilic plate count (APC) on gilthead seabream surfaces was evaluated during refrigerated storage (21 days). The related growth curves were compared with those obtained by a conventional third order predictive model obtaining a low agreement between observed and predicted data (Root Mean Squared Error = 1.77 for Aeromonas hydrophila and 0.64 for APC).The Lotka-Volterra interspecific competition model was used in order to calculate the degree of interaction between the two bacterial populations (beta_(Ah/APC) and beta_(Ah/APC), respectively, the interspecific competition coefficients of APC on Aeromonas hydrophila and vice-versa). Afterwards, the Lotka-Volterra equations were applied as tertiary predictive model, taking into account, simultaneously, the environmental fluctuations and the bacterial interspecific competition. This approach allowed to obtain a best fitting to the observed mean growth curves with a Root Mean Squared Error of 0.09 forAeromonas hydrophila and 0.28 for APC. Finally, some considerations about the necessary use of competitive models in the context of the new trends in predictive microbiology were taken.
机译:在冷藏存储(21天)期间评估了嗜水气单胞菌的生长和在金头鲷表面上的需氧嗜温板计数(APC)。将相关生长曲线与通过常规三阶预测模型获得的生长曲线进行比较,获得的观测数据与预测数据之间的一致性较低(嗜水气单胞菌的均方根误差= 1.77,APC的均方根误差= 0.64)。使用Lotka-Volterra种间竞争模型为了计算两个细菌种群之间的相互作用程度(分别为beta_(Ah / APC)和beta_(Ah / APC),APC对嗜水气单胞菌的种间竞争系数,反之亦然。然后,将Lotka-Volterra方程式作为第三级预测模型,同时考虑了环境波动和细菌种间竞争。这种方法可以最佳地拟合所观察到的平均生长曲线,其中嗜水气单胞菌的均方根误差为0.09,而APC的均方根误差为0.28。最后,考虑了在预测性微生物学的新趋势中必须使用竞争模型的一些考虑。

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