Kauserud Håvard, Saetre Glenn-Peter, Schmidt Olaf, Decock Cony, Schumacher Trond
Department of Biology, University of Oslo, Blindern, Norway.
Fungal Genet Biol. 2006 Jul;43(7):503-10. doi: 10.1016/j.fgb.2006.02.004. Epub 2006 Apr 18.
This study provides an analysis of the vegetative incompatibility system in Serpula lacrymans (Basidiomycota), a genetic system used to recognize nonself in fungi. Seventy-five worldwide isolates could be grouped into eight vegetative compatibility (VC) types, some of them distributed on different continents. Mating studies combined with vegetative incompatibility analyses revealed that the vegetative incompatibility response between isolates mainly could be explained by two biallelic vegetative incompatibility (vic) loci. The frequency distributions of the interpreted vic alleles do not seem to support the idea of frequency-dependent or balancing selection acting on the vic loci. We find little genetic variation at the vic loci and in one of the loci there was a significant heterozyote deficiency among strains in the overall material. The results may be explained by a recent worldwide dispersal of a few S. lacrymans isolates and, correspondingly, only a few vic alleles are being maintained in these populations.
本研究对真菌丝膜菌(担子菌门)中的营养体不亲和系统进行了分析,该遗传系统用于识别真菌中的非己成分。全球75个分离株可分为8种营养体亲和(VC)类型,其中一些分布在不同大陆。交配研究与营养体不亲和分析相结合表明,分离株之间的营养体不亲和反应主要可由两个双等位基因营养体不亲和(vic)位点来解释。所解释的vic等位基因的频率分布似乎不支持对vic位点起作用的频率依赖性或平衡选择的观点。我们发现vic位点的遗传变异很少,并且在其中一个位点,总体材料中的菌株间存在显著的杂合子缺失。这些结果可能是由于最近少数丝膜菌分离株在全球范围内扩散,相应地,这些群体中仅维持了少数vic等位基因。