Noda Institute for Scientific Research, 399 Noda, Noda 278-0037, Japan.
Mol Genet Genomics. 2012 Feb;287(2):177-87. doi: 10.1007/s00438-011-0669-1. Epub 2011 Dec 30.
Our goal in this work was to develop a method to minimize the chromosomes of Aspergillus oryzae, to arrive at a deeper understanding of essential gene functions that will help create more efficient industrially useful strains. In a previous study, we successfully constructed a highly reduced chromosome 7 using multiple large-scale chromosomal deletions (Jin et al. in Mol Genet Genomics 283:1-12, 2010). Here, we have created a further reduced chromosome A. oryzae mutant harboring a reduced chromosome 7 and a reduced chromosome 8 both of which contain a large number of non-syntenic blocks. These are the smallest A. oryzae chromosomes that have been reported. Protoplast fusion between the two distinct chromosome-reduced mutants produced a vigorous and stable fusant which was isolated. PCR and flow cytometry confirmed that two kinds of nuclei, derived from the parent strains, existed in this fusant and that the chromosome DNA per nucleus was doubled, suggesting that the fusant was a heterozygous diploid strain. By treating the cell with 1 μg/ml benomyl, cell nuclei haploidization was induced in the stable diploid strain. Array comparative genomic hybridization and pulsed-field gel electrophoresis confirmed that the reduced chromosomes 7 and 8 co-existed in the haploid fusant and that no other chromosomal modifications had occurred. This method provides a useful tool for chromosome engineering in A. oryzae to construct an industry-useful strain.
我们在这项工作中的目标是开发一种方法来最小化米曲霉的染色体,以更深入地了解对创造更高效的工业有用菌株有帮助的必需基因功能。在之前的研究中,我们成功地使用多次大规模染色体缺失构建了高度减少的染色体 7(Jin 等人,Mol Genet Genomics 283:1-12, 2010)。在这里,我们构建了一个进一步减少的米曲霉突变体,其带有减少的染色体 7 和减少的染色体 8,两者都包含大量非同源块。这些是报道的最小的米曲霉染色体。来自两个不同的染色体减少突变体的原生质体融合产生了一个活跃且稳定的融合体,该融合体被分离出来。PCR 和流式细胞术证实,来自亲本菌株的两种核存在于该融合体中,每个核的染色体 DNA 加倍,表明融合体是杂合二倍体菌株。通过用 1μg/ml 的苯并咪唑处理细胞,稳定的二倍体菌株中的细胞核单倍体化被诱导。阵列比较基因组杂交和脉冲场凝胶电泳证实,减少的染色体 7 和 8 共存于单倍体融合体中,并且没有发生其他染色体修饰。这种方法为米曲霉的染色体工程提供了有用的工具,以构建工业有用的菌株。