首页> 外文期刊>Journal of microbiology and biotechnology >Non-Aflatoxigenicity of Commercial Aspergillus oryzae Strains Due to Genetic Defects Compared to Aflatoxigenic Aspergillus flavus
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Non-Aflatoxigenicity of Commercial Aspergillus oryzae Strains Due to Genetic Defects Compared to Aflatoxigenic Aspergillus flavus

机译:与遗传性缺陷相比,商品米曲霉菌株的非黄曲霉原性与黄曲霉黄曲霉相比

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Aspergillus oryzae is generally recognized as safe, but it is closely related to A. flavus in morphology and genetic characteristics. In this study, we tested the aflatoxigenicity and genetic analysis of nine commercial A. oryzae strains that were used in Korean soybean fermented products. Cultural and HPLC analyses showed that none of the commercial strains produced detectable amount of aflatoxins. According to the molecular analysis of 17 genes in the aflatoxin (AF) biosynthetic pathway, the commercial strains could be classified into three groups. The group I strains contained all the 17 AF biosynthetic genes tested in this study; the group II strains deleted nine AF biosynthetic genes and possessed eight genes, including aflG, aflI, aflK, aflL, aflM, aflO, aflP, and aflQ; the group III strains only had six AF biosynthetic genes, including aflG, afll, aflK, aflO, aflP, and aflQ. With the reverse transcription polymerase chain reaction, the group I A. oryzae strains showed no expression of aflG, aflQ and/or aflM genes, which resulted in the lack of AF-producing ability. Group II and group III strains could not produce AF owing to the deletion of more than half of the AF biosynthetic genes. In addition, the sequence data of polyketide synthase A (pksA) of group I strains of A. oryzae showed that there were three point mutations (two silent mutations and one missense mutation) compared with aflatoxigenic A. flavus used as the positive control in this study.
机译:米曲霉通常被认为是安全的,但在形态和遗传特征上与黄曲霉密切相关。在这项研究中,我们测试了在韩国大豆发酵产品中使用的9种商品米曲霉菌株的黄曲霉毒性和遗传分析。文化和HPLC分析表明,没有商业菌株产生可检测量的黄曲霉毒素。根据黄曲霉毒素(AF)生物合成途径中17个基因的分子分析,该商业菌株可分为三类。第一组菌株包含了本研究中测试的所有17种AF生物合成基因。第二组菌株缺失了9个AF生物合成基因,并具有8个基因,包括aflG,aflI,aflK,aflL,aflM,aflO,aflP和aflQ。第三类菌株仅具有六个AF生物合成基因,包括aflG,afll,aflK,aflO,aflP和aflQ。通过逆转录聚合酶链反应,稻米曲霉IA菌株没有显示出aflG,aflQ和/或aflM基因的表达,这导致缺乏AF产生能力。第二组和第三组菌株由于缺失了一半以上的AF生物合成基因而不能产生AF。另外,米曲霉I类菌株的聚酮化合物合酶A(pksA)的序列数据表明,与黄曲霉毒素黄曲霉用作阳性对照相比,存在3个点突变(两个沉默突变和一个错义突变)。研究。

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