Fotheringham S, Holloman W K
Department of Microbiology, Cornell University Medical College, New York, New York 10021.
Genetics. 1991 Dec;129(4):1052-60.
Transformation of a leu1 auxotroph of Ustilago maydis to prototrophy with an autonomously replicating plasmid containing the selectable LEU1 gene was found to be efficient regardless of whether the transforming DNA was circular or linear. When pairs of autonomously replicating plasmids bearing noncomplementing leu1 alleles were used to cotransform strains deleted entirely for the genomic copy of the LEU1 gene, Leu+ transformants were observed to arise by extrachromosomal recombination. The frequency of recombination increased severalfold when one plasmid of the pair was made linear by cleavage at one end of the leu1 gene, but increased 10-100-fold when both plasmids were first made linear. The increase in recombination noted in wild-type and rec1 strains was not apparent in the rec2 mutant unless the members of the pair of plasmids were cut at opposite ends of the leu1 gene to yield linear molecules offset in only one of the two possible configurations. Use of a pair of plasmid substrates designed to measure nonreciprocal and multiple exchange events revealed only a minor fraction of the total events arise through these modes, and further that no stimulation occurred when the plasmid DNA was linear. It is unlikely that the defect in rec2 lies in a mismatch correction step since a high yield of Leu+ recombinants was obtained from the rec2 mutant when it was transformed with heteroduplex DNA constructed from plasmids with the two different leu1 alleles.
人们发现,用含有可选择的LEU1基因的自主复制质粒将玉米黑粉菌的亮氨酸营养缺陷型转化为原养型是有效的,无论转化DNA是环状还是线性的。当使用携带非互补亮氨酸1等位基因的自主复制质粒对来共转化完全缺失LEU1基因基因组拷贝的菌株时,观察到亮氨酸原养型转化体通过染色体外重组产生。当质粒对中的一个质粒通过在亮氨酸1基因一端切割而线性化时,重组频率增加了几倍,但当两个质粒都首先线性化时,重组频率增加了10到100倍。在野生型和rec1菌株中观察到的重组增加在rec2突变体中并不明显,除非质粒对的成员在亮氨酸1基因的相对两端切割,以产生仅在两种可能构型之一中偏移的线性分子。使用一对设计用于测量非互惠和多次交换事件的质粒底物表明,在总事件中只有一小部分是通过这些模式产生的,而且当质粒DNA是线性时没有观察到刺激作用。rec2中的缺陷不太可能在于错配校正步骤,因为当用由具有两种不同亮氨酸1等位基因的质粒构建的异源双链DNA转化rec2突变体时,获得了高产的亮氨酸原养型重组体。