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采前抗真菌化合物对波动和极端环境条件下的串珠镰刀菌和赭曲霉的影响。

Effect of preharvest anti-fungal compounds on Aspergillus steynii and A. carbonarius under fluctuating and extreme environmental conditions.

机构信息

Food Technology Department, Lleida University, UTPV-XaRTA-Agrotecnio, Rovira Roure 191, 25198 Lleida, Spain.

出版信息

Int J Food Microbiol. 2012 Oct 1;159(2):167-76. doi: 10.1016/j.ijfoodmicro.2012.08.001. Epub 2012 Aug 7.

Abstract

Ochratoxin A (OTA) has been found in pre-harvest and freshly harvested wheat. Spanish climatic conditions point to Aspergillus species as probably responsible for this OTA. In this study the effectiveness of 5 non-specific antifungal chemicals used on wheat fields (25.9% tebuconazole+60.0% N,N-capramide dimethyl; 12.70% tebuconazole+12.7% prothioconazole+59.5% N,N-amide dimethyldecane; 12.5% epoxiconazole; 12.5% tetraconazole; and 70% thiophanate methyl) and an extract from Equisetum arvense were investigated in vitro on wheat by recording growth (colony size, fungal growth and DNA concentration) and OTA production of two ochratoxigenic isolates of Aspergillus carbonarius and three of A. steynii, simulating current and extreme climatic conditions. Inoculated wheat was incubated under two alternating temperature cycles (20/30°C and 25/35°C) with photoperiod (14/10h lightness/darkness), and two moisture levels (40 and 25%). The Aspergillus species tested seemed to be able to persist in predicted future climatic conditions, in particular, A. steynii, a high OTA producer. Azoles were effective in controlling the growth of A. carbonarius and A. steynii, and this effectiveness may not be compromised by the increase in temperature and decrease of humidity. However, azoles are not useful for the prevention of OTA accumulation, which could be only reduced in A. carbonarius under non-extreme conditions. Although some adjustment will probably be required, further studies should be conducted in the field, since the antifungals used in this study are applied at flowering and not directly on the grain. Moreover, timing of antifungal application may need to be optimized. Finally, Equisetum extract showed promising results as an antifungal, however further work to adjust the applied concentrations is required.

摘要

赭曲霉毒素 A(OTA)已在收获前和新收获的小麦中发现。西班牙的气候条件表明,可能是曲霉菌属的物种导致了这种 OTA 的产生。在这项研究中,研究了 5 种在麦田中使用的非特异性抗真菌化学物质(25.9%戊唑醇+60.0% N,N-己二酰胺二甲;12.70%戊唑醇+12.7%丙硫菌唑+59.5% N,N-酰胺二甲癸烷;12.5%环丙唑醇;12.5%三唑酮;和 70%噻菌灵)和来自木贼的提取物在体外对小麦的有效性,通过记录两个产赭曲霉毒素的曲霉菌属的真菌生长(菌落大小、真菌生长和 DNA 浓度)和 OTA 产量,即赭曲霉 A. carbonarius 和 A. steynii 的三个分离株,模拟当前和极端气候条件。接种的小麦在两个交替的温度循环(20/30°C 和 25/35°C)下,用光照周期(14/10 小时光暗)和两个水分水平(40%和 25%)进行培养。测试的曲霉属似乎能够在预测的未来气候条件下存活下来,特别是高 OTA 产生者 A. steynii。唑类药物能有效控制 A. carbonarius 和 A. steynii 的生长,而且这种有效性不会因温度升高和湿度降低而受到影响。然而,唑类药物对 OTA 积累的预防作用不大,只有在非极端条件下,A. carbonarius 的 OTA 积累才会减少。尽管可能需要进行一些调整,但由于本研究中使用的抗真菌剂是在开花期使用的,而不是直接在谷物上使用,因此应该在田间进行进一步的研究。此外,可能需要优化抗真菌剂的应用时间。最后,木贼提取物作为一种抗真菌剂显示出有希望的结果,但是需要进一步的工作来调整应用浓度。

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