Guo Min, Zhu Xiaolei, Li Hongxia, Tan Leyong, Pan Yuemin
Department of Plant Pathology, College of Plant Protection, Anhui Agricultural University, Hefei, 230036, China.
Anhui Research Institute of Chemical Industry, Hefei, 230041, China.
AMB Express. 2016 Dec;6(1):57. doi: 10.1186/s13568-016-0232-x. Epub 2016 Aug 24.
The accurate manipulation of genomic integration of mutant alleles or fluorescent fusion-protein constructs is necessary for understanding of pathogenic mechanism of Magnaporthe oryzae. Recently, this can be achieved by integrating of exogenous DNA randomly into genome of this pathogen, but ectopic integration may result in alteration of gene expression or gene disruption due to unpredictable position effects and/or disruption of protein-coding regions. In this study, we establish a novel strategy for locus-specific integration of exogenous DNA via carboxin-resistance reconstitution by a point-mutation (H245L) on succinate dehydrogenase subunit Mosdi1. Independent transformants derived from the same reconstitution construct showed consistent fluorescent signal and undiversified phenotypes, including hyphae growth, conidiation and pathogenicity, in M. oryzae. Meanwhile, 96 % of all transformants integrate correctly into the Mosdi1 locus as a single copy. Furthermore, we provide a vector carrying yeast recombination cassette and thus allow assembly of multiple overlapping DNA fragments by yeast in vivo recombination for gene complementation and protein localization assay.
准确操纵突变等位基因或荧光融合蛋白构建体的基因组整合对于理解稻瘟病菌的致病机制至关重要。最近,这可以通过将外源DNA随机整合到该病原体的基因组中来实现,但由于不可预测的位置效应和/或蛋白质编码区域的破坏,异位整合可能导致基因表达改变或基因破坏。在本研究中,我们通过琥珀酸脱氢酶亚基Mosdi1上的点突变(H245L)实现羧菌灵抗性重建,建立了一种外源DNA位点特异性整合的新策略。来自相同重建构建体的独立转化体在稻瘟病菌中显示出一致的荧光信号和未分化的表型,包括菌丝生长、产孢和致病性。同时,所有转化体中有96%作为单拷贝正确整合到Mosdi1位点。此外,我们提供了一种携带酵母重组盒的载体,从而允许通过酵母体内重组组装多个重叠DNA片段用于基因互补和蛋白质定位分析。