Hamann Andrea, Osiewacz Heinz D
Botanisches Institut, Johann Wolfgang Goethe-Universität, Marie-Curie-Str. 9, D-60439 Frankfurt, Germany.
Fungal Genet Biol. 2004 Dec;41(12):1088-98. doi: 10.1016/j.fgb.2004.08.008.
In the present study, we analysed different Podospora anserina strains for their ability to induce spore killing and identified three new killer strains. Test crosses of killer strains with different sensitive strains revealed different second division segregation ratios suggesting an influence of the sensitive strain on the crossing-over frequency. In crosses of killer strain O with a sensitive strain, the frequency of two-spored asci was found to vary extremely from perithecium to perithecium. Furthermore, crosses of strain O with sensitive strain Us5 led to a significant proportion of asci containing an unexpected high number of surviving spores as the result of gene conversion. Finally, for the first time, we present data demonstrating that in a number of ascospores the killer and the corresponding sensitive allele is located in one individual nucleus. Mycelia derived from such ascospores display a "sensitive killer" phenotype. Crosses of these mycelia with a killer strain as well as with a sensitive strain result in spore killing. Strikingly, heterokaryotic spores containing the recombined "sensitive/killer" allele and a nucleus with a killer allele give rise to mycelia protected against spore killing during selfing.
在本研究中,我们分析了不同的嗜热栖热放线菌菌株诱导孢子杀伤的能力,并鉴定出三种新的杀伤菌株。杀伤菌株与不同敏感菌株的测交显示出不同的第二次分裂分离比,这表明敏感菌株对交换频率有影响。在杀伤菌株O与敏感菌株的杂交中,发现双孢子子囊的频率在不同子囊壳之间差异极大。此外,菌株O与敏感菌株Us5的杂交导致相当比例的子囊由于基因转换而含有数量意外高的存活孢子。最后,我们首次提供数据表明,在许多子囊中,杀伤基因和相应的敏感等位基因位于单个细胞核中。源自此类子囊孢子的菌丝体表现出“敏感杀伤”表型。这些菌丝体与杀伤菌株以及敏感菌株的杂交都会导致孢子杀伤。令人惊讶的是,含有重组“敏感/杀伤”等位基因和一个带有杀伤等位基因的细胞核的异核孢子在自交过程中产生的菌丝体能够免受孢子杀伤。