Gallo Antonia, Perrone Giancarlo, Solfrizzo Michele, Epifani Filomena, Abbas Abdelhamid, Dobson Alan D W, Mulè Giuseppina
Institute of Sciences of Food Production, ISPA-CNR, Bari, Italy.
Int J Food Microbiol. 2009 Jan 31;129(1):8-15. doi: 10.1016/j.ijfoodmicro.2008.10.022. Epub 2008 Oct 31.
Aspergillus carbonarius is considered the main fungus responsible for ochratoxin A (OTA) contamination in grapes. OTA is a potent nephrotoxin and a possible human carcinogen with a polyketide derived structure. Fungal polyketide synthases (PKSs) have recently been demonstrated to be involved in OTA biosynthesis in both Penicillium and Aspergillus species. We report here on the identification and characterisation of part of a novel polyketide synthase gene, ACpks from A. carbonarius. The sequence appears to encode conserved ketosynthase and acyl transferase domains, which are characteristic of previously characterised PKS enzymes. Expression of the ACpks gene is differentially regulated, with transcription being observed when the fungus was grown on synthetic grape medium and on OTA permissive medium (MM) whereas no transcription was detected when the fungus was grown on OTA restrictive medium (YES). ACpks expression was also observed when A. carbonarius was grown at low pH, with concomitant increases in OTA production. This correlation between ACpks gene expression and OTA production suggests the likely involvement for the product of this gene in ochratoxin A biosynthesis in the fungus. From a preliminary screening of Aspergillus isolates with ACpks specific primers, ACpks gene homologues appear to be present in A. sclerotioniger and A. ibericus, two species of section Nigri which are closely related to A. carbonarius.
黑曲霉被认为是导致葡萄中赭曲霉毒素A(OTA)污染的主要真菌。OTA是一种强效肾毒素,也是一种可能的人类致癌物,具有聚酮化合物衍生结构。最近已证明真菌聚酮化合物合酶(PKSs)参与青霉属和曲霉属物种中OTA的生物合成。我们在此报告了来自黑曲霉的一个新型聚酮化合物合酶基因ACpks部分的鉴定和表征。该序列似乎编码保守的酮合成酶和酰基转移酶结构域,这是先前表征的PKS酶的特征。ACpks基因的表达受到差异调节,当真菌在合成葡萄培养基和允许OTA产生的培养基(MM)上生长时可观察到转录,而当真菌在限制OTA产生的培养基(YES)上生长时未检测到转录。当黑曲霉在低pH条件下生长时也观察到ACpks表达,同时OTA产量增加。ACpks基因表达与OTA产生之间的这种相关性表明该基因的产物可能参与了真菌中赭曲霉毒素A的生物合成。通过用ACpks特异性引物对曲霉分离株进行初步筛选,ACpks基因同源物似乎存在于硬化黑曲霉和伊比利亚曲霉中,这两种黑曲霉属物种与黑曲霉密切相关。