het-B allorecognition in Podospora anserina is determined by pseudo-allelic interaction of genes encoding a HET and lectin fold domain protein and a PII-like protein
Clave, C.; Dheur, S.; Ament-Velasquez, S. L.; Granger-Farbos, A.; Saupe, S. J.
Show abstract
Filamentous fungi display allorecognition genes that trigger regulated cell death (RCD) when strains of unlike genotype fuse. Podospora anserina is one of several model species for the study of this allorecognition process termed heterokaryon or vegetative incompatibility. Incompatibility restricts transmission of mycoviruses between isolates. In P. anserina, genetic analyses have identified nine incompatibility loci, termed het loci. Here we set out to clone the genes controlling het-B incompatibility. het-B displays two incompatible alleles, het-B1 and het-B2. We find that the het-B locus encompasses two adjacent genes, Bh and Bp that exist as highly divergent allelic variants (Bh1/Bh2 and Bp1/Bp2) in the incompatible haplotypes. Bh encodes a protein with an N-terminal HET domain, a cell death inducing domain bearing homology to Toll/interleukin-1 receptor (TIR) domains and a C-terminal domain with a predicted lectin fold. The Bp product is homologous to PII-like proteins, a family of small trimeric proteins acting as sensors of adenine nucleotides in bacteria. We show that although the het-B system appears genetically allelic, incompatibility is in fact determined by the non-allelic Bh1/Bp2 interaction while the reciprocal Bh2/Bp1 interaction plays no role in incompatibility. The highly divergent C-terminal lectin fold domain of BH determines recognition specificity. Population studies and genome analyses indicate that het-B is under balancing selection with trans-species polymorphism, highlighting the evolutionary significance of the two incompatible haplotypes. In addition to emphasizing anew the central role of TIR-like HET domains in fungal RCD, this study identifies novel players in fungal allorecognition and completes the characterization of the entire het gene set in that species. Author summaryMany cellular life forms display genetic systems that protect individuality and discriminate conspecific self from non-self. In filamentous fungi, cell fusion events between strains are under check by specific allorecognition genes that trigger regulated cell death upon detection of non-self. The role of incompatibility is to restrict mycovirus transmission and conspecific parasitism. Podospora anserina, a good model for the study of this form of allorecognition, harbors nine incompatibility het loci. Previous studies have revealed that these genes can be homologous to genes with immune functions in other phyla including bacteria, plants and animals. We have cloned het-B, the last of the nine het genes that remained to be identified and found that it is a complex locus comprising two adjacent genes Bh and Bp. BH displays an N-terminal HET domain (related to TIR domains) and a C-terminal domain with a predicted lectin fold. BP is homologous to PII-like proteins, known bacterial metabolite sensors. Intriguingly, despite apparent genetic allelism, incompatibility is dictated by the non-allelic Bh/Bp interaction. This study stresses the reoccurring involvement of HET domains in fungal RCD and signs completion of the characterization of the entire set of het loci in that species, enabling a comparative analysis of the different genetic architectures underlying allorecognition.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genome biology and evolution of mating type loci in four cereal rust fungi 96%
- Recent loss of the Dim2 DNA methyltransferase decreases mutation rate in repeats and changes evolutionary trajectory in a fungal pathogen 95%
- The STRIPAK signaling complex regulates phosphorylation of GUL1, an RNA-binding protein that shuttles on endosomes 95%
Similar papers in this journal
- Multiple pathways to homothallism in closely related yeast lineages in the Basidiomycota 97%
- Transposon mediated horizontal transfer of the host-specific virulence protein ToxA between three fungal wheat pathogens 97%
- Multiple hybridization events punctuate the evolutionary trajectory of Malassezia furfur 97%
Similar papers in this journal
- Fungal gasdermin-like proteins are controlled by proteolytic cleavage 97%
- Duplication and neofunctionalization of a horizontally-transferred xyloglucanase as a facet of the red queen co-evolutionary dynamic 96%
- Ancient origin and high diversity of zymocin-like killer toxins in the budding yeast subphylum 95%
Similar papers in this journal
- Chromosome fusion affects genetic diversity and evolutionary turnover of functional loci, but consistently depends on chromosome size 94%
- Ancient secretory pathways contributed to the evolutionary origin of an ecologically impactful bioluminescence system 94%
- Two independent origins of XY sex chromosomes in Asparagus 94%
Similar papers in this journal
- Host adaptation and genome evolution of the broad host range fungal rust pathogen, Austropuccinia psidii 97%
- Genomic factors shaping codon usage across the Saccharomycotina subphylum 95%
- Functional analysis of chromatin-associated proteins in Sordaria macrospora reveals similar roles for RTT109 and ASF1 in development and DNA damage response 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.