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Molecular genetics of heterokaryon incompatibility in filamentous ascomycetes
1Laboratoire de Génétique Moléculaire des Champignons, IBGC UMR CNRS 5095, 33077 Bordeaux Cedex, France. sven.saupe@ibgc.u-bordeaux2.fr
Abstract:
Filamentous fungi spontaneously undergo vegetative cell fusion events within but also between individuals. These cell fusions (anastomoses) lead to cytoplasmic mixing and to the formation of vegetative heterokaryons (i.e., cells containing different nuclear types). The viability of these heterokaryons is genetically controlled by specific loci termed het loci (for heterokaryon incompatibility). Heterokaryotic cells formed between individuals of unlike het genotypes undergo a characteristic cell death reaction or else are severely inhibited in their growth. The biological significance of this phenomenon remains a puzzle. Heterokaryon incompatibility genes have been proposed to represent a vegetative self/nonself recognition system preventing heterokaryon formation between unlike individuals to limit horizontal transfer of cytoplasmic infectious elements. Molecular characterization of het genes and of genes participating in the incompatibility reaction has been achieved for two ascomycetes, Neurospora crassa and Podospora anserina. These analyses have shown that het genes are diverse in sequence and do not belong to a gene family and that at least some of them perform cellular functions in addition to their role in incompatibility. Divergence between the different allelic forms of a het gene is generally extensive, but single-amino-acid differences can be sufficient to trigger incompatibility. In some instances het gene evolution appears to be driven by positive selection, which suggests that the het genes indeed represent recognition systems. However, work on nonallelic incompatibility systems in P. anserina suggests that incompatibility might represent an accidental activation of a cellular system controlling adaptation to starvation.
Insights
Fungal cell fusion (anastomosis) creates heterokaryons, whose survival is governed by heterokaryon incompatibility (het) genes. These genes prevent fusion between genetically different fungi, potentially limiting infectious element spread.
Area of Science:
- Mycology
- Genetics
- Cell Biology
Background:
- Filamentous fungi fuse cells (anastomose), forming heterokaryons with mixed nuclei.
- Heterokaryon formation is regulated by specific genes called het loci.
- Incompatibility between different het genotypes causes cell death or growth inhibition.
Purpose of the Study:
- To investigate the biological significance of heterokaryon incompatibility (HI) in filamentous fungi.
- To understand the molecular mechanisms and evolutionary drivers of het genes.
- To explore the potential role of HI as a self/non-self recognition system.
Main Methods:
- Molecular characterization of het genes in *Neurospora crassa* and *Podospora anserina*.
- Analysis of allelic divergence and functional roles of het genes.
- Investigation of nonallelic incompatibility systems.
Main Results:
- Het genes are diverse, not belonging to a single gene family, and have functions beyond incompatibility.
- Single amino acid differences in het alleles can trigger incompatibility.
- Evolutionary analysis suggests het genes may be under positive selection, supporting a recognition system role.
Conclusions:
- Heterokaryon incompatibility genes are diverse and can have dual functions.
- HI may function as a vegetative self/non-self recognition system in fungi.
- Alternative hypotheses suggest HI could be an accidental activation of starvation adaptation systems.