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产赭曲霉毒素和产黄曲霉毒素的曲霉菌株共培养过程中的相互作用。

Mutual effects on mycotoxin production during co-culture of ochratoxigenic and aflatoxigenic Aspergillus strains.

机构信息

Scientific Equipment and Research Division, Kasetsart University Research and Development Institute (KURDI), Kasetsart University, Bangkok, 10900, Thailand.

Department of Food Science and Technology, Faculty of Agro-Industry, Kasetsart University, Bangkok, 10900, Thailand.

出版信息

Mycotoxin Res. 2023 Feb;39(1):57-66. doi: 10.1007/s12550-022-00473-z. Epub 2023 Jan 12.

Abstract

Mycotoxin co-occurrence compromises the safety of food crops worldwide. Environmental factors, as well as fungal interaction, can substantially influence the infectivity of mycotoxigenic fungi and their subsequent production of multi-mycotoxin. Here, we investigated the mutual effects of the co-culture of ochratoxigenic and aflatoxigenic Aspergillus strains on the co-production of ochratoxin A (OTA) and aflatoxin B1 (AFB1). Single cultures of ochratoxigenic A. carbonarius and A. alliaceus grew optimally at 25 °C, whereas aflatoxigenic A. flavus grew optimally at 35 °C. The maximum levels of OTA and AFB1 were achieved at 25 °C, whereas mycotoxin production decreased at 35 °C. During competitive growth of the ochratoxigenic and aflatoxigenic isolates, inhibition or stimulation of mycotoxin production was dependent on the fungal strain, temperature, and the ratio of the spore concentration. Aspergillus carbonarius and A. alliaceus generally produced OTA, with similar patterns of relative OTA levels at all temperatures. AFB1 production by A. flavus in the presence of ochratoxigenic Aspergillus species was inhibited at 25 °C and stimulated at 35 °C. These results indicated that the temperature, presence of other mycotoxigenic Aspergillus species, and ratio of the initial spore concentration significantly contributed to the co-production of OTA and AFB1.

摘要

真菌毒素共存危及全球粮食作物安全。环境因素以及真菌相互作用,可极大地影响产毒真菌的传染性及其随后产生的多真菌毒素。在这里,我们研究了产赭曲霉毒素和产黄曲霉毒素的曲霉菌株共培养对赭曲霉毒素 A (OTA)和黄曲霉毒素 B1 (AFB1)共生产的相互影响。产赭曲霉毒素的 A. carbonarius 和 A. alliaceus 的单培养在 25°C 下生长最佳,而产黄曲霉毒素的 A. flavus 在 35°C 下生长最佳。OTA 和 AFB1 的最高水平在 25°C 下达到,而在 35°C 下,真菌毒素的产生减少。在产赭曲霉毒素和产黄曲霉毒素分离物的竞争生长过程中,真菌毒素产生的抑制或刺激取决于真菌菌株、温度和孢子浓度比。A. carbonarius 和 A. alliaceus 通常产生 OTA,在所有温度下相对 OTA 水平的模式相似。在存在产赭曲霉毒素的曲霉物种的情况下,A. flavus 在 25°C 时抑制 AFB1 的产生,而在 35°C 时刺激其产生。这些结果表明,温度、其他产真菌毒素的曲霉物种的存在以及初始孢子浓度比显著促进了 OTA 和 AFB1 的共生产。

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