Lahouar Amani, Marin Sonia, Crespo-Sempere Ana, Saïd Salem, Sanchis Vicente
Laboratory of Biochemistry, Unity of Mycotoxicology, Faculty of Medicine of Sousse, University of Sousse, Sousse, Tunisia; Food Technology Department, University of Lleida, XaRTA-UTPV, Agrotecnico center, Lleida, Spain.
Food Technology Department, University of Lleida, XaRTA-UTPV, Agrotecnico center, Lleida, Spain.
Rev Argent Microbiol. 2016 Jan-Mar;48(1):78-85. doi: 10.1016/j.ram.2015.10.001. Epub 2016 Feb 23.
Sorghum, which is consumed in Tunisia as human food, suffers from severe colonization by several toxigenic fungi and contamination by mycotoxins. The Tunisian climate is characterized by high temperature and humidity that stimulates mold proliferation and mycotoxin accumulation in foodstuffs. This study investigated the effects of temperature (15, 25 and 37°C), water activity (aw, between 0.85 and 0.99) and incubation time (7, 14, 21 and 28 d) on fungal growth and aflatoxin B1 (AFB1) production by three Aspergillus flavus isolates (8, 10 and 14) inoculated on sorghum grains. The Baranyi model was applied to identify the limits of growth and mycotoxin production. Maximum diameter growth rates were observed at 0.99 a(w) at 37°C for two of the isolates. The minimum aw needed for mycelial growth was 0.91 at 25 and 37°C. At 15°C, only isolate 8 grew at 0.99 a(w). Aflatoxin B1 accumulation could be avoided by storing sorghum at low water activity levels (≤0.91 a(w)). Aflatoxin production was not observed at 15°C. This is the first work on the effects of water activity and temperature on A. flavus growth and AFB1 production by A. flavus isolates on sorghum grains.
在突尼斯,高粱作为人类食物被食用,但它受到几种产毒真菌的严重侵染以及霉菌毒素的污染。突尼斯的气候特点是高温高湿,这刺激了霉菌在食品中的繁殖和霉菌毒素的积累。本研究调查了温度(15、25和37°C)、水分活度(aw,介于0.85和0.99之间)以及培养时间(7、14、21和28天)对接种在高粱籽粒上的三株黄曲霉分离株(8、10和14)的真菌生长和黄曲霉毒素B1(AFB1)产生的影响。应用Baranyi模型来确定生长和霉菌毒素产生的限度。在37°C、aw为0.99时,其中两株分离株观察到最大直径生长速率。在25和37°C时,菌丝体生长所需的最低aw为0.91。在15°C时,只有分离株8在aw为0.99时生长。通过将高粱储存在低水分活度水平(≤0.91 aw)可以避免黄曲霉毒素B1的积累。在15°C时未观察到黄曲霉毒素的产生。这是第一项关于水分活度和温度对高粱籽粒上黄曲霉分离株生长及AFB1产生影响的研究。