Research and Development Division, Kikkoman Corporation, 399 Noda, Noda City, Chiba 278-0037, Japan.
DNA Res. 2011 Jun;18(3):165-76. doi: 10.1093/dnares/dsr009.
We conducted genome sequencing of the filamentous fungus Aspergillus sojae NBRC4239 isolated from the koji used to prepare Japanese soy sauce. We used the 454 pyrosequencing technology and investigated the genome with respect to enzymes and secondary metabolites in comparison with other Aspergilli sequenced. Assembly of 454 reads generated a non-redundant sequence of 39.5-Mb possessing 13 033 putative genes and 65 scaffolds composed of 557 contigs. Of the 2847 open reading frames with Pfam domain scores of >150 found in A. sojae NBRC4239, 81.7% had a high degree of similarity with the genes of A. oryzae. Comparative analysis identified serine carboxypeptidase and aspartic protease genes unique to A. sojae NBRC4239. While A. oryzae possessed three copies of α-amyalse gene, A. sojae NBRC4239 possessed only a single copy. Comparison of 56 gene clusters for secondary metabolites between A. sojae NBRC4239 and A. oryzae revealed that 24 clusters were conserved, whereas 32 clusters differed between them that included a deletion of 18 508 bp containing mfs1, mao1, dmaT, and pks-nrps for the cyclopiazonic acid (CPA) biosynthesis, explaining the no productivity of CPA in A. sojae. The A. sojae NBRC4239 genome data will be useful to characterize functional features of the koji moulds used in Japanese industries.
我们对从用于制备日本酱油的曲中分离出的丝状真菌 Aspergillus sojae NBRC4239 进行了基因组测序。我们使用 454 焦磷酸测序技术,对该基因组进行了研究,比较了与其他已测序的 Aspergillus 相关的酶和次生代谢物。454 读取序列的组装生成了一个 39.5-Mb 的非冗余序列,其中包含 13033 个推定基因和 65 个由 557 个连续序列组成的支架。在 A. sojae NBRC4239 中发现的 2847 个具有 Pfam 域评分>150 的开放阅读框中,81.7%与 A. oryzae 的基因具有高度相似性。比较分析确定了 A. sojae NBRC4239 特有的丝氨酸羧肽酶和天冬氨酸蛋白酶基因。虽然 A. oryzae 拥有 3 个α-淀粉酶基因的副本,但 A. sojae NBRC4239 只拥有 1 个副本。比较 A. sojae NBRC4239 和 A. oryzae 之间的 56 个次生代谢物基因簇发现,有 24 个簇是保守的,而 32 个簇在它们之间不同,包括缺失了 18508bp 的 mfs1、mao1、dmaT 和 pks-nrps,用于环匹嗪酸 (CPA) 的生物合成,这解释了 A. sojae 中没有 CPA 的产量。A. sojae NBRC4239 基因组数据将有助于表征用于日本工业的曲霉菌的功能特征。