Shima Yoko, Ito Yasuhiro, Kaneko Satoshi, Hatabayashi Hidemi, Watanabe Yasushi, Adachi Yoshikazu, Yabe Kimiko
National Food Research Institute, National Agriculture and Food Research Organization (NARO), 2-1-12 Kannondai, Tsukuba, Ibaraki 305-8642, Japan.
Fungal Genet Biol. 2009 Jan;46(1):67-76. doi: 10.1016/j.fgb.2008.10.005. Epub 2008 Oct 21.
Mutants exhibiting resistance to the fungicide, carboxin, were isolated from Aspergillus oryzae, and the mutations in the three gene loci, which encode succinate dehydrogenase (SDH) B, C, and D subunits, were identified to be independently responsible for the resistance. A structural model of the SDH revealed the different mechanisms that confer carboxin-resistance in different mutations. The mutant AosdhB gene (AosdhB(cxr)) was further examined for possible use as a transformant selection marker. After transformation with AosdhB(cxr), carboxin-resistant colonies appeared within 4 days of culture, and all of the examined colonies carried the transgene. Insertion analyses revealed that the AosdhB(cxr) gene was integrated into AosdhB locus via homologous recombination at high efficiency. Furthermore, AosdhB(cxr) functioned as a successful selection marker in a transformation experiment in Aspergillus parasiticus, suggesting that this transformation system can be used for Aspergillus species.
从米曲霉中分离出对杀菌剂羧菌胺具有抗性的突变体,并确定编码琥珀酸脱氢酶(SDH)B、C和D亚基的三个基因位点的突变分别独立导致了抗性。SDH的结构模型揭示了不同突变赋予羧菌胺抗性的不同机制。进一步研究了突变体AosdhB基因(AosdhB(cxr))作为转化体选择标记的可能性。用AosdhB(cxr)转化后,培养4天内出现了羧菌胺抗性菌落,所有检测的菌落都携带转基因。插入分析表明,AosdhB(cxr)基因通过同源重组高效整合到AosdhB位点。此外,AosdhB(cxr)在寄生曲霉的转化实验中作为成功的选择标记发挥作用,表明该转化系统可用于曲霉属物种。