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Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex

Sex chromosomes often carry large nonrecombining regions that can extend progressively over time, generating evolutionary strata of sequence divergence. However, some sex chromosomes display an incomplete suppression of recombination. Large genomic regions without recombination and evolutionary stra...

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Autores principales: Hartmann, Fanny E, Ament-Velásquez, Sandra Lorena, Vogan, Aaron A, Gautier, Valérie, Le Prieur, Stephanie, Berramdane, Myriam, Snirc, Alodie, Johannesson, Hanna, Grognet, Pierre, Malagnac, Fabienne, Silar, Philippe, Giraud, Tatiana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8136517/
https://www.ncbi.nlm.nih.gov/pubmed/33555341
http://dx.doi.org/10.1093/molbev/msab040
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author Hartmann, Fanny E
Ament-Velásquez, Sandra Lorena
Vogan, Aaron A
Gautier, Valérie
Le Prieur, Stephanie
Berramdane, Myriam
Snirc, Alodie
Johannesson, Hanna
Grognet, Pierre
Malagnac, Fabienne
Silar, Philippe
Giraud, Tatiana
author_facet Hartmann, Fanny E
Ament-Velásquez, Sandra Lorena
Vogan, Aaron A
Gautier, Valérie
Le Prieur, Stephanie
Berramdane, Myriam
Snirc, Alodie
Johannesson, Hanna
Grognet, Pierre
Malagnac, Fabienne
Silar, Philippe
Giraud, Tatiana
author_sort Hartmann, Fanny E
collection PubMed
description Sex chromosomes often carry large nonrecombining regions that can extend progressively over time, generating evolutionary strata of sequence divergence. However, some sex chromosomes display an incomplete suppression of recombination. Large genomic regions without recombination and evolutionary strata have also been documented around fungal mating-type loci, but have been studied in only a few fungal systems. In the model fungus Podospora anserina (Ascomycota, Sordariomycetes), the reference S strain lacks recombination across a 0.8-Mb region around the mating-type locus. The lack of recombination in this region ensures that nuclei of opposite mating types are packaged into a single ascospore (pseudohomothallic lifecycle). We found evidence for a lack of recombination around the mating-type locus in the genomes of ten P. anserina strains and six closely related pseudohomothallic Podospora species. Importantly, the size of the nonrecombining region differed between strains and species, as indicated by the heterozygosity levels around the mating-type locus and experimental selfing. The nonrecombining region is probably labile and polymorphic, differing in size and precise location within and between species, resulting in occasional, but infrequent, recombination at a given base pair. This view is also supported by the low divergence between mating types, and the lack of strong linkage disequilibrium, chromosomal rearrangements, transspecific polymorphism and genomic degeneration. We found a pattern suggestive of evolutionary strata in P. pseudocomata. The observed heterozygosity levels indicate low but nonnull outcrossing rates in nature in these pseudohomothallic fungi. This study adds to our understanding of mating-type chromosome evolution and its relationship to mating systems.
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spelling pubmed-81365172021-05-25 Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex Hartmann, Fanny E Ament-Velásquez, Sandra Lorena Vogan, Aaron A Gautier, Valérie Le Prieur, Stephanie Berramdane, Myriam Snirc, Alodie Johannesson, Hanna Grognet, Pierre Malagnac, Fabienne Silar, Philippe Giraud, Tatiana Mol Biol Evol Discoveries Sex chromosomes often carry large nonrecombining regions that can extend progressively over time, generating evolutionary strata of sequence divergence. However, some sex chromosomes display an incomplete suppression of recombination. Large genomic regions without recombination and evolutionary strata have also been documented around fungal mating-type loci, but have been studied in only a few fungal systems. In the model fungus Podospora anserina (Ascomycota, Sordariomycetes), the reference S strain lacks recombination across a 0.8-Mb region around the mating-type locus. The lack of recombination in this region ensures that nuclei of opposite mating types are packaged into a single ascospore (pseudohomothallic lifecycle). We found evidence for a lack of recombination around the mating-type locus in the genomes of ten P. anserina strains and six closely related pseudohomothallic Podospora species. Importantly, the size of the nonrecombining region differed between strains and species, as indicated by the heterozygosity levels around the mating-type locus and experimental selfing. The nonrecombining region is probably labile and polymorphic, differing in size and precise location within and between species, resulting in occasional, but infrequent, recombination at a given base pair. This view is also supported by the low divergence between mating types, and the lack of strong linkage disequilibrium, chromosomal rearrangements, transspecific polymorphism and genomic degeneration. We found a pattern suggestive of evolutionary strata in P. pseudocomata. The observed heterozygosity levels indicate low but nonnull outcrossing rates in nature in these pseudohomothallic fungi. This study adds to our understanding of mating-type chromosome evolution and its relationship to mating systems. Oxford University Press 2021-02-08 /pmc/articles/PMC8136517/ /pubmed/33555341 http://dx.doi.org/10.1093/molbev/msab040 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License(http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits non-commercial re-use, distribution, and reproduction in anymedium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Discoveries
Hartmann, Fanny E
Ament-Velásquez, Sandra Lorena
Vogan, Aaron A
Gautier, Valérie
Le Prieur, Stephanie
Berramdane, Myriam
Snirc, Alodie
Johannesson, Hanna
Grognet, Pierre
Malagnac, Fabienne
Silar, Philippe
Giraud, Tatiana
Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex
title Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex
title_full Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex
title_fullStr Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex
title_full_unstemmed Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex
title_short Size Variation of the Nonrecombining Region on the Mating-Type Chromosomes in the Fungal Podospora anserina Species Complex
title_sort size variation of the nonrecombining region on the mating-type chromosomes in the fungal podospora anserina species complex
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8136517/
https://www.ncbi.nlm.nih.gov/pubmed/33555341
http://dx.doi.org/10.1093/molbev/msab040
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