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具有不同产赭曲霉毒素A能力的曲霉菌株的挥发性化合物

Volatile compounds of Aspergillus strains with different abilities to produce ochratoxin A.

作者信息

Jeleń Henryk H, Grabarkiewicz-Szczesna Jadwiga

机构信息

Institute of Food Technology and Department of Chemistry, The August Cieszkowski Agricultural University of Poznań, Wojska Polskiego 31, 60-624 Poznań, Poland.

出版信息

J Agric Food Chem. 2005 Mar 9;53(5):1678-83. doi: 10.1021/jf0487396.

Abstract

Volatile compounds emitted by Aspergillus strains having different abilities to produce ochratoxin A were investigated. Thirteen strains of Aspergillus ochraceus, three belonging to the A. ochraceus group, and eight other species of Aspergillus were examined for their abilities to produce volatile compounds and ochratoxin A on a wheat grain medium. The profiles of volatile compounds, analyzed using SPME, in all A. ochraceus strains, regardless of their toxeginicity, were similar and comprised mainly of 1-octen-3-ol, 3-octanone, 3-octanol, 3-methyl-1-butanol, 1-octene, and limonene. The prevailing compound was always 1-octen-3-ol. Mellein, which forms part of the ochratoxin A molecule, was found in both toxigenic and nontoxigenic strains. Volatile compounds produced by other Aspergillus strains were similar to those of A. ochraceus. Incubation temperatures (20, 24, and 27 degrees C) and water content in the medium (20, 30, and 40%) influenced both volatile compounds formation and ochratoxin A biosynthesis efficiency, although conditions providing the maximum amount of volatiles were different from those providing the maximum amount of ochratoxin A. The pattern of volatiles produced by toxigenic A. ochraceus strains does not facilitate their differentiation from nontoxigenic strains.

摘要

对具有不同产赭曲霉毒素A能力的曲霉菌株所释放的挥发性化合物进行了研究。检测了13株赭曲霉、3株属于赭曲霉组以及其他8种曲霉在小麦籽粒培养基上产生挥发性化合物和赭曲霉毒素A的能力。使用固相微萃取(SPME)分析所有赭曲霉菌株(无论其产毒能力如何)的挥发性化合物谱,结果相似,主要包括1-辛烯-3-醇、3-辛酮、3-辛醇、3-甲基-1-丁醇、1-辛烯和柠檬烯。主要成分始终是1-辛烯-3-醇。在产毒和不产毒菌株中均发现了构成赭曲霉毒素A分子一部分的麦角硫因。其他曲霉菌株产生的挥发性化合物与赭曲霉的相似。培养温度(20、24和27摄氏度)和培养基中的水分含量(20%、30%和40%)影响挥发性化合物的形成和赭曲霉毒素A的生物合成效率,尽管产生最大量挥发性物质的条件与产生最大量赭曲霉毒素A的条件不同。产毒赭曲霉菌株产生的挥发性物质模式不利于将其与不产毒菌株区分开来。

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