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异硫氰酸烯丙酯蒸汽对花生种子携带真菌生长及储存花生中黄曲霉毒素产生的抑制作用

[Inhibition of Growth of Seed-Borne Fungi and Aflatoxin Production on Stored Peanuts by Allyl Isothiocyanate Vapor].

作者信息

Okano Kiyoshi, Nishioka Chikako, Iida Tetsuya, Ozu Yuzi, Kaneko Misao, Watanabe Yuko, Mizukami Yuichi, Ichinoe Masakatsu

机构信息

Mycotoxin Research Association.

Mitsubishi-Chemical Foods Corporation.

出版信息

Shokuhin Eiseigaku Zasshi. 2018;59(1):45-50. doi: 10.3358/shokueishi.59.45.

Abstract

Aspergillus parasiticus contamination of peanuts results in the production of highly toxic metabolites, such as aflatoxin B, B, G and G, and its incidence in imported peanuts is reported to be increasing. Here, we examined whether the antifungal compound allyl isothiocyanate (AIT), which is present in mustard seed, could inhibit the growth of seed-borne fungi and aflatoxin-producing fungi. Peanuts produced in China and Japan were inoculated with A. parasiticus and exposed to AIT vapor released by a commercial mustard seed extract in closed containers under controlled conditions of temperature and humidity. AIT in the inoculated peanut samples reached its highest concentration of 44.8 ng/mL at 3 hr and decreased to 5.6 ng/mL after 9 weeks. Although AIT decreased the growth of the seed-borne fungi during the test period, the inoculated fungi survived. All tested peanuts samples were analyzed for aflatoxin using the HPLC method. There was a correlation between the number of aflatoxin-producing fungi and the total amount of aflatoxin production in the inoculated peanut samples. Our results indicate that AIT was effective in inhibiting the growth of seed-borne fungi and aflatoxin-producing fungi.

摘要

寄生曲霉污染花生会导致产生高毒性代谢产物,如黄曲霉毒素B、B、G和G,据报道进口花生中该霉菌的发生率正在上升。在此,我们研究了存在于芥菜种子中的抗真菌化合物烯丙基异硫氰酸酯(AIT)是否能抑制种子携带真菌和产黄曲霉毒素真菌的生长。将中国和日本产的花生接种寄生曲霉,并在温度和湿度受控的封闭容器中,使其暴露于市售芥菜种子提取物释放的AIT蒸汽中。接种花生样品中的AIT在3小时时达到最高浓度44.8 ng/mL,9周后降至5.6 ng/mL。尽管在试验期间AIT降低了种子携带真菌的生长,但接种的真菌仍存活。使用高效液相色谱法对所有测试花生样品进行黄曲霉毒素分析。接种花生样品中产黄曲霉毒素真菌的数量与黄曲霉毒素总产量之间存在相关性。我们的结果表明,AIT能有效抑制种子携带真菌和产黄曲霉毒素真菌的生长。

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