Picard M, Debuchy R, Coppin E
Laboratoire de Génétique, URA 1354 du CNRS, Université Paris XI, Orsay, France.
Genetics. 1991 Jul;128(3):539-47. doi: 10.1093/genetics/128.3.539.
DNAs that encode the mating-type functions (mat+ and mat-) of the filamentous fungus Podospora anserina were cloned with the use of the mating-type A probe from Neurospora crassa. Cloning the full mat information was ascertained through gene replacement experiments. Molecular and functional analyses of haploid transformants carrying both mating types lead to several striking conclusions. Mat+ mat- strains are dual maters. However, the resident mat information is dominant to the mat information added by transformation with respect to fruiting body development and ascus production. Moreover, when dual mating mat+ mat- strains are crossed to mat+ or mat- testers, there is strong selection, after fertilization, that leads to the loss from the mat+ mat- nucleus of the mat information that matches that of the tester. Finally, the mat locus contains at least two domains, one sufficient for fertilization, the other necessary for sporulation.
利用来自粗糙脉孢菌的交配型A探针,克隆了编码丝状真菌栗疫霉交配型功能(mat +和mat -)的DNA。通过基因置换实验确定了完整mat信息的克隆。对携带两种交配型的单倍体转化体进行分子和功能分析得出了几个惊人的结论。Mat + mat -菌株是双交配型。然而,就子实体发育和子囊产生而言,常驻的mat信息相对于通过转化添加的mat信息具有显性作用。此外,当双交配mat + mat -菌株与mat +或mat -测试菌株杂交时,受精后会有强烈的选择作用,导致mat + mat -核中与测试菌株相匹配的mat信息丢失。最后,mat位点至少包含两个结构域,一个足以实现受精,另一个是孢子形成所必需的。