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Identification of aflatoxin biosynthesis genes by genetic complementation in an Aspergillus flavus mutant lacking the aflatoxin gene cluster.

机译:通过缺乏黄曲霉毒素基因簇的黄曲霉突变体中的遗传互补来鉴定黄曲霉毒素的生物合成基因。

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摘要

Aspergillus flavus mutant strain 649, which has a genomic DNA deletion of at least 120 kb covering the aflatoxin biosynthesis cluster, was transformed with a series of overlapping cosmids that contained DNA harboring the cluster of genes. The mutant phenotype of strain 649 was rescued by transformation with a combination of cosmid clones 5E6, 8B9, and 13B9, indicating that the cluster of genes involved in aflatoxin biosynthesis resides in the 90 kb of A. flavus genomic DNA carried by these clones. Transformants 5E6 and 20B11 and transformants 5E6 and 8B9 accumulated intermediate metabolites of the aflatoxin pathway, which were identified as averufanin and/or averufin, respectively.These data suggest that avf1, which is involved in the conversion of averufin to versiconal hemiacetal acetate, was present in the cosmid 13B9. Deletion analysis of 13B9 located the gene on a 7-kb DNA fragment of the cosmid. Transformants containing cosmid 8B9 converted exogenously supplied O-methylsterigmatocystin to aflatoxin, indicating that the oxidoreductase gene (ord1), which mediates the conversion of O-methylsterigmatocystin to aflatoxin, is carried by this cosmid. The analysis of transformants containing deletions of 8B9 led to the localization of ord1 on a 3.3-kb A. flavus genomic DNA fragment of the cosmid.
机译:用一系列重叠的粘粒转化了黄曲霉突变菌株649,该菌株具有至少120 kb的基因组DNA缺失,覆盖了黄曲霉毒素的生物合成簇,该菌株用一系列重叠的粘粒转化,所述粘粒包含带有基因簇的DNA。通过用粘粒克隆5E6、8B9和13B9的组合转化来挽救649型菌株的突变表型,表明参与黄曲霉毒素生物合成的基因簇位于这些克隆携带的90 kb黄曲霉基因组DNA中。转化子5E6和20B11以及转化子5E6和8B9积累了黄曲霉毒素途径的中间代谢产物,分别被确定为阿弗拉芬和/或阿弗洛芬。在粘粒13B9中。 13B9的缺失分析将该基因定位在粘粒的7-kb DNA片段上。含有粘粒8B9的转化体在外源条件下将O-甲基甾体藻胱苷转化为黄曲霉毒素,表明该粘粒带有氧化还原酶基因(ord1),该基因介导了O-甲基甾体藻毒素向黄曲霉毒素的转化。包含8B9缺失的转化子的分析导致ord1定位在粘粒的3.3-kb黄曲霉基因组DNA片段上。

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