Food Technology Department, University of Lleida, XaRTA-UTPV, Av. Alcalde Rovira Roure 191, 25198 Lleida, Spain.
Int J Food Microbiol. 2010 Sep 1;142(3):354-9. doi: 10.1016/j.ijfoodmicro.2010.07.018. Epub 2010 Jul 23.
The aim of this study was to determine the effect of a natural carotenoid mixture (Capsantal FS-30-NT), containing capsanthin and capsorubin, on growth and mycotoxin production of ochratoxin A-producing A. ochraceus, A. westerdijkiae, and A. tubingensis isolates. One isolate of each species, previously isolated from paprika or chilli, was inoculated on Czapek Yeast extract Agar (CYA) medium supplemented with different amounts of capsantal (0 to 1%) and incubated at 10, 15 and 25 degrees C for 21days. Growth rates and lag phases were obtained, and OTA production was determined at 7, 14 and 21days. The taxonomically related A. ochraceus and A. westerdijkiae showed the same behavior at 15 degrees C, but A. ochraceus was able to grow at 10 degrees C and had higher growth rates at 25 degrees C. A. tubingensis had the highest growth rates and lowest OTA production capacity of the assayed isolates, and it was not able to grow at 10 degrees C. Capsantal addition resulted in increased lag phases at 15 degrees C for all the strains, while growth rates remained rather constant. At 25 degrees C capsantal reduced growth rates, with rather constant lag phases. However, the effect of capsantal on OTA production was inconclusive, because it depended on temperature or time, and mostly was not significant. Low temperature has been a crucial factor in OTA production, regardless of the capsantal concentration tested, especially for A. tubingensis and A. westerdijkiae. Industrial storage temperature for paprika and chilli is approximately 10 degrees C. If this temperature is maintained, mould growth and OTA production should be reduced.
本研究旨在确定天然类胡萝卜素混合物(Capsantal FS-30-NT)对产赭曲霉毒素 A 的赭曲霉(A. ochraceus)、威氏曲霉(A. westerdijkiae)和烟色曲霉(A. tubingensis)分离株生长和产毒素的影响。从辣椒粉或辣椒中分离出的每个种的一个分离株接种于添加不同量 Capsantal(0 至 1%)的察氏酵母提取物琼脂(CYA)培养基上,并在 10、15 和 25°C 下培养 21 天。获得生长率和延滞期,并在第 7、14 和 21 天测定 OTA 产量。分类上相关的 A. ochraceus 和 A. westerdijkiae 在 15°C 时表现出相同的行为,但 A. ochraceus 能够在 10°C 下生长,在 25°C 下生长率更高。测试的分离株中,A. tubingensis 具有最高的生长率和最低的 OTA 产生能力,且不能在 10°C 下生长。在 15°C 时,Capsantal 的添加导致所有菌株的延滞期增加,而生长率保持相对稳定。在 25°C 时,Capsantal 降低了生长率,而延滞期相对稳定。然而,Capsantal 对 OTA 产生的影响尚无定论,因为它取决于温度或时间,而且大多不显著。低温是 OTA 产生的关键因素,无论测试的 Capsantal 浓度如何,特别是对 A. tubingensis 和 A. westerdijkiae 而言。辣椒粉和辣椒的工业储存温度约为 10°C。如果保持此温度,霉菌生长和 OTA 产生应会减少。