Mitigating aflatoxin B1 in high-moisture sorghum silage: Aspergillus flavus growth and aflatoxin B1 prediction

Mariana Gonda, Caterina Rufo, Jose L. Gonzalez-Andujar, Silvana Vero
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Abstract

Aspergillus flavus (A. flavus), a frequent contaminant in silage, is a significant producer of aflatoxins, notably the potent carcinogen aflatoxin B1. This contaminant poses a potential risk during the initial aerobic phase of ensiling. The present work studied the impact of temperature on A. flavus growth and aflatoxin B1 production in laboratory-scale sorghum silos during the initial aerobic phase. Growth curves of A. flavus were generated at various temperatures and modeled with the Gompertz model. Results indicated that the optimal temperature range for the maximum growth rate in sorghum mini-silos is between 25 and 30°C. Mold biomass and aflatoxin B1 levels were quantified using qPCR and HPLC, respectively. A predictive model for aflatoxin B1 synthesis in the initial ensiling phase was established, in function of grain moisture, external temperature, and time. Within the studied range, A. flavus’s initial concentration did not significantly influence aflatoxin B1 production. According to the model maximum aflatoxin production is expected at 30% moisture and 25°C temperature, after 6 days in the aerobic phase. Aflatoxin B1 production in such conditions was corroborated experimentally. Growth curves and aflatoxin B1 production highlighted that at 48 h of incubation under optimal conditions, aflatoxin B1 concentrations in mini-silos exceeded national legislation limits, reaching values close to 100 ppb. These results underscore the risk associated with A. flavus presence in ensiling material, emphasizing the importance of controlling its development in sorghum silos.
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减轻高水分高粱青贮饲料中的黄曲霉毒素 B1:黄曲霉生长和黄曲霉毒素 B1 预测
黄曲霉(A. flavus)是青贮饲料中一种常见的污染物,它是黄曲霉毒素的重要生产者,尤其是强致癌物黄曲霉毒素 B1。这种污染物在贮藏初期的好氧阶段会带来潜在风险。本研究探讨了在实验室规模的高粱筒仓中,温度对黄曲霉生长和黄曲霉毒素 B1 产量的影响。在不同温度下生成了黄曲霉的生长曲线,并用贡珀兹模型进行了模拟。结果表明,在 25 至 30 摄氏度之间是高粱小筒仓中黄曲霉生长率最高的最佳温度范围。霉菌生物量和黄曲霉毒素 B1 含量分别通过 qPCR 和 HPLC 进行了定量分析。根据谷物水分、外部温度和时间的变化,建立了黄曲霉毒素 B1 在贮藏初期合成的预测模型。在研究范围内,黄曲霉菌的初始浓度对黄曲霉毒素 B1 的产生没有显著影响。根据该模型,黄曲霉毒素的最大产量预计是在 30% 的水分和 25°C 的温度下,在好氧期 6 天后产生的。黄曲霉毒素 B1 在这种条件下的产量得到了实验的证实。生长曲线和黄曲霉毒素 B1 的产生突出表明,在最佳条件下培养 48 小时后,迷你蚕豆中的黄曲霉毒素 B1 浓度超过了国家法律规定的限值,接近 100 ppb。这些结果凸显了黄曲霉存在于贮藏材料中的风险,强调了控制黄曲霉在高粱筒仓中发展的重要性。
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