Esteban A, Abarca M L, Bragulat M R, Cabañes F J
Grup de Micologia Veterinària, Departament de Sanitat i d'Anatomia Animals, Facultat de Veterinària, Universitat Autònoma de Barcelona, 08193 Bellaterra (Barcelona), Spain.
Food Microbiol. 2006 Oct;23(7):634-40. doi: 10.1016/j.fm.2005.12.006. Epub 2006 Feb 21.
The effect of water activity (aw) (0.78-0.99) and temperature (15 and 30 degrees C) on growth and production of ochratoxin A (OTA) of six Aspergillus carbonarius strains was studied in two culture media: Czapek yeast autolysate (CYA) agar and yeast extract sucrose (YES) agar, during a period of 30 days. The strains were selected to include different sources and different reported abilities to produce OTA and were characterized by RAPD and ITS-5.8S rDNA sequencing. CYA showed to be better culture medium than YES for OTA production in the isolates tested. OTA concentration was higher at 15 degrees C than at 30 degrees C. At 30 degrees C, ranges for OTA production were more restrictive than those for growth. OTA was produced from 0.86, 0.90 or 0.94 aw depending on the strain. At 15 degrees C, growth and OTA production were detected only in the 0.94-0.99 aw range. The molecular study performed showed that five of the strains were conspecific and no correlation was found between molecular data and the OTA production level or origin. The remaining strain had never been able to produce OTA and will probably represent a new species in the Aspergillus section Nigri. Our results show that A. carbonarius is able to grow and produce OTA in a wide range of water activities at both high and low temperatures.
研究了水分活度(aw)(0.78 - 0.99)和温度(15℃和30℃)对六种黑曲霉菌株在两种培养基(查氏酵母自溶物(CYA)琼脂和酵母提取物蔗糖(YES)琼脂)中生长及赭曲霉毒素A(OTA)产生的影响,培养期为30天。这些菌株选自不同来源,具有不同的OTA产生能力报道,并通过随机扩增多态性DNA(RAPD)和ITS - 5.8S核糖体DNA测序进行了表征。在测试的分离株中,CYA培养基显示出比YES培养基更有利于OTA的产生。OTA浓度在15℃时高于30℃。在30℃时,OTA产生的范围比生长范围更具限制性。根据菌株不同,在aw为0.86、0.90或0.94时可产生OTA。在15℃时,仅在aw为0.94 - 0.99的范围内检测到生长和OTA产生。进行的分子研究表明,其中五个菌株是同种的,分子数据与OTA产生水平或来源之间未发现相关性。其余菌株从未能够产生OTA,可能代表黑曲霉属中的一个新物种。我们的结果表明,黑曲霉能够在高温和低温下的广泛水分活度范围内生长并产生OTA。