Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Niigata Prefectural Sake Research Institute, 2-5932-133 Suido-cho, Chuo-ku, Niigata 951-8121, Japan.
J Biosci Bioeng. 2024 Nov;138(5):415-422. doi: 10.1016/j.jbiosc.2024.08.005. Epub 2024 Sep 3.
Koji mold (Aspergillus oryzae) is a key microorganism in brewing and fermentation in Japan. We isolated koji molds from the environment in Niigata Prefecture. Eighty-one environmental samples were placed on isolation medium made from steamed rice with wood ash and 36 Aspergillus section Flavi-like strains were obtained. Of those, 26 strains did not produce aflatoxin. We studied their morphology, sequence of ITS region, calmodulin gene, aflatoxin biosynthetic homologous gene cluster and α-amylase gene and fermentation-related enzyme activities. Furthermore, DNA-seq analysis of 14 strains from 26 non-aflatoxin producing strains were conducted and compared the three mycotoxin biosynthetic gene clusters (aflatoxin, cyclopiazonic acid, and aflatrem) and fermentation-related genes against those of reference strain A. oryzae RIB40. In some strains, gene sequences confirmed the absence of mycotoxin production, but differences in fermentation-related enzyme activities could not be explained well by amino acid substitutions. We classified the 26 isolates into 6 morphology types based on the appearance of colonies and mating types, and it was found that strains of the same morphology type had similar enzymatic profiles and gene sequences. Our results show that koji molds with various properties occur in the environment, and it will expand the possibilities of koji mold in industrial use.
米曲菌(米曲霉)是日本酿造和发酵的关键微生物。我们从新潟县的环境中分离出了米曲菌。在由蒸米饭和草木灰制成的分离培养基上放置了 81 个环境样本,得到了 36 株类似于青霉属的曲霉。其中 26 株不产黄曲霉毒素。我们研究了它们的形态、ITS 区序列、钙调蛋白基因、黄曲霉毒素生物合成同源基因簇和α-淀粉酶基因以及与发酵相关的酶活性。此外,对 26 株非产黄曲霉毒素菌株中的 14 株进行了 DNA-seq 分析,并将三个产真菌毒素基因簇(黄曲霉毒素、环匹阿尼酸和黄曲霉烯)和与发酵相关的基因与参考菌株 A.oryzae RIB40 进行了比较。在一些菌株中,基因序列证实了不产生真菌毒素,但发酵相关酶活性的差异不能用氨基酸取代很好地解释。我们根据菌落和交配型的外观将 26 个分离物分为 6 种形态类型,发现形态类型相同的菌株具有相似的酶谱和基因序列。我们的研究结果表明,具有各种特性的米曲菌存在于环境中,这将扩大米曲菌在工业用途中的可能性。