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Impact of interacting climate change factors on growth and ochratoxin A production by Aspergillus section Circumdati and Nigri species on coffee

机译:相互作用的气候变化因素对切段曲霉和黑曲霉菌种对咖啡生长和曲霉A产生的影响

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摘要

The objectives of this study were to evaluate the effect of interacting climate change (CC) factors (water stress [water activity, aw; 0.99-0.90]); temperature [30, 35 °C]; and elevated CO2 [400 and 1000 ppm] on (1) lag phases prior to growth, (2) growth and (3) ochratoxin A (OTA) production by species of Aspergillus sections Circumdati and Nigri on coffee-based media and stored coffee beans. The lag phases, prior to growth, of all strains/species were slightly increased as aw, temperature and CO2 were modified. The interacting CC factors showed that most strains/species examined grew well at 30 °C and slightly less so at 35 °C except for Aspergillus niger (A 1911) which could tolerate the higher temperature. In addition, the interaction of elevated CO2 (1000 ppm) + temperature (35 °C) increased OTA production when compared with 30 °C but only for strains of Aspergillus westerdijkiae (B2), Aspergillus ochraceus (ITAL 14) and Aspergillus steynii (CBS 112814). Most of the strains had optimum growth at 0.95 aw at 35 °C, while at 30 °C the optimum was at 0.98 aw. On stored coffee beans there was only a significant stimulation of OTA production by A. westerdijkiae strains in elevated CO2 (1000) at 0.90 aw. These results suggest differential effects of CC factors on OTA production by species in the Sections Circumdati and Nigri in stored coffee and that for most species there is a reduction in toxin production.
机译:这项研究的目的是评估相互作用的气候变化(CC)因素的影响(水分胁迫[水分活度,aw; 0.99-0.90]);温度[30,35°C];和(1)生长前的滞后阶段,(2)生长和(3)曲霉菌种Circumdati和Nigri在咖啡基培养基和储存的咖啡豆上产生的ra曲霉毒素A(OTA)产生的二氧化碳(400和1000 ppm)升高。随着aw,温度和CO 2的改变,所有菌株/种的生长前的滞后阶段略有增加。相互作用的CC因子表明,除了能耐受较高温度的黑曲霉(A 1911)外,大多数检查的菌株/物种在30°C时生长良好,而在35°C时略低。此外,与30°C相比,升高的CO2(1000 ppm)+温度(35°C)的相互作用增加了OTA的产生,但仅适用于西曲霉(B2),曲霉(ITAL 14)和Steynii(CBS)菌株112814)。大多数菌株在35°C时于0.95 aw时具有最佳生长,而在30°C时,最佳生长于0.98 aw。在储存的咖啡豆中,仅在0.90 aw的升高的CO2(1000)下,西曲霉菌株显着刺激了OTA的产生。这些结果表明,CC因子对贮藏咖啡中Circumdati和Nigri部分中的物种OTA产生的不同影响,并且对于大多数物种而言,毒素产生的减少。

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