Bragulat M Rosa, Eustaquio Alba, Cabañes F Javier
Veterinary Mycology Group, Departament of Animal Health and Anatomy, Universitat Autònoma de Barcelona, Bellaterra, Spain.
Chemical Analysis Service, Universitat Autònoma de Barcelona, Bellaterra, Spain.
PLoS One. 2017 Oct 10;12(10):e0185986. doi: 10.1371/journal.pone.0185986. eCollection 2017.
Ochratoxin A (OTA) is a potent nephrotoxin and carcinogen which is found in a wide variety of common foods and beverages and it is produced by several species of Aspergillus and Penicillium. Ochratoxin α (OTα), a major metabolite of OTA, has also been reported to occur in cultures of OTA-producing species. However there is some controversial about the participation of OTα in the biosynthesis of OTA, mainly because its biosynthesis pathway has not yet been completely characterized. Aspergillus carbonarius is the main responsible source of ochratoxin A (OTA) in food commodities such as wine, grapes or dried vine fruits from main viticultural regions worldwide. However, little is known about the presence of OTα in isolates of A. carbonarius. In this study we evaluated the effects of temperature and incubation time on OTα production by both OTA and non-OTA-producing strains of A. carbonarius. OTA and OTα were detected on the basis of HPLC fluorometric response compared with that of their standards and confirmed by HPLC-MS in selected samples. The non-OTA-producing strains did produce neither OTA nor OTα at any of the conditions tested. The OTA-producing strains studied were able to produce both OTA and OTα in most of the conditions tested. In general, higher amounts of OTA than OTα were produced, but a positive correlation in the production of these two metabolites was detected. The lack of production of both OTA and OTα in the non-OTA-producing strains could be caused by the presence of silent genes or by mutations in functional or regulatory genes involved in OTA production.
赭曲霉毒素A(OTA)是一种强效肾毒素和致癌物,存在于多种常见食品和饮料中,由几种曲霉属和青霉属真菌产生。赭曲霉毒素α(OTα)是OTA的主要代谢产物,也已报道在产生OTA的菌种培养物中出现。然而,关于OTα是否参与OTA的生物合成存在一些争议,主要是因为其生物合成途径尚未完全明确。在全球主要葡萄种植区的葡萄酒、葡萄或葡萄干等食品中,黑曲霉是赭曲霉毒素A(OTA)的主要来源。然而,对于黑曲霉菌株中OTα的存在情况知之甚少。在本研究中,我们评估了温度和培养时间对OTA产生菌株和非OTA产生菌株的黑曲霉产生OTα的影响。通过与标准品的HPLC荧光响应比较检测OTA和OTα,并在选定样品中通过HPLC-MS进行确认。在所测试的任何条件下,非OTA产生菌株均未产生OTA和OTα。在所研究的OTA产生菌株中,在大多数测试条件下都能够产生OTA和OTα。一般来说,OTA的产量高于OTα,但检测到这两种代谢产物的产生呈正相关。非OTA产生菌株中OTA和OTα均不产生可能是由于沉默基因的存在或参与OTA产生的功能或调控基因发生突变所致。