苹果汁中挥发性化合物对扩张青霉真菌生长和展霉素产生的影响

Mycotoxins Pub Date : 2014-01-01 DOI:10.2520/MYCO.64.1
T. Taguchi, A. Ishihara, H. Nakajima
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引用次数: 2

摘要

用6种不同的市售苹果汁配制苹果汁培养基培养膨胀青霉。苹果汁的差异对展霉素的产生有深刻的影响,而真菌的生长一般不受影响。展青霉素的最大浓度是最低展青霉素浓度培养基的7.3倍。将六种苹果汁通过蒸发浓缩,并加入milliq水还原成原始体积。用重组苹果汁配制的培养基培养膨胀假单胞菌,测定其展霉素浓度和真菌生长情况。苹果汁蒸发有降低棒曲霉素产生和促进真菌生长的趋势,表明挥发性化合物促进棒曲霉素产生和抑制真菌生长。采用气相色谱-质谱法对苹果汁中的挥发性化合物进行分析。选择13种浓度通过蒸发大大降低的化合物来评估它们对展霉素产生的刺激作用。在13个化合物中,乙酸2-甲基丙酯、丁酸乙酯、丁酸乙酯、3-甲基-1-丁醇、乙酸己酯、1-己醇和2-甲基丁酸7个化合物的浓度依赖性地增加了展曲霉素的产量;2-甲基丁酸及其乙酯具有较高的药效。结果表明,苹果汁培养基中挥发性物质的组成对展曲霉素的产生和展曲霉素的生长有很大的影响。
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Effects of volatile compounds in apple juices on fungal growth and patulin production of Penicillium expansum
Penicillium expansum was cultured in apple juice media prepared from six different commercial apple juices. The patulin production was profoundly affected by the differences in apple juices, whereas fungal growth was generally not. The maximum concentration of patulin was 7 .3-fold of that in the media containing minimum concentration of patulin. The six apple juices were concentrated by evaporation and reconstructed to the original volumes by adding Milli-Q water. P. expansum was cultured in the media prepared from reconstructed apple juices, and the patulin concentration and fungal growth were determined. Evaporation of apple juice tended to decrease patulin production and to increase fungal growth, suggesting that the volatile compounds promote patulin production and inhibit fungal growth. The volatile compounds in the apple juice were then analyzed by GC-MS. The 13 compounds of which concentrations were largely decreased by evaporation were selected for evaluation of their stimulation of patulin production. Seven out of the 13 compounds, 2-methylpropyl acetate, ethyl butyrate, ethyl 2-methylbutanoate, 3-methyl-1-butanol, hexyl acetate, 1-hexanol, and 2-methylbutanoic acid, increased the patulin production of P. expansum concentration-dependently; 2-methylbutanoic acid and its ethyl ester were highly effective. Our results indicated that the composition of volatile compounds in apple juice media largely affects the patulin production and the growth of P. expansum.
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