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Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation

In the house mouse there are numerous chromosomal races distinguished by different combinations of metacentric chromosomes. These may come into contact with each other and with the ancestral all-acrocentric race, and form hybrid zones. The chromosomal clines that make up these hybrid zones may be co...

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Autores principales: Gündüz, İslam, Pollock, Christianne L., Giménez, Mabel D., Förster, Daniel W., White, Thomas A., Sans-Fuentes, Maria A., Hauffe, Heidi C., Ventura, Jacint, López-Fuster, María José, Searle, Jeremy B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3954089/
https://www.ncbi.nlm.nih.gov/pubmed/24710041
http://dx.doi.org/10.3390/genes1020193
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author Gündüz, İslam
Pollock, Christianne L.
Giménez, Mabel D.
Förster, Daniel W.
White, Thomas A.
Sans-Fuentes, Maria A.
Hauffe, Heidi C.
Ventura, Jacint
López-Fuster, María José
Searle, Jeremy B.
author_facet Gündüz, İslam
Pollock, Christianne L.
Giménez, Mabel D.
Förster, Daniel W.
White, Thomas A.
Sans-Fuentes, Maria A.
Hauffe, Heidi C.
Ventura, Jacint
López-Fuster, María José
Searle, Jeremy B.
author_sort Gündüz, İslam
collection PubMed
description In the house mouse there are numerous chromosomal races distinguished by different combinations of metacentric chromosomes. These may come into contact with each other and with the ancestral all-acrocentric race, and form hybrid zones. The chromosomal clines that make up these hybrid zones may be coincident or separated from each other (staggered). Such staggered hybrid zones are interesting because they may include populations of individuals homozygous for a mix of features of the hybridising races. We review the characteristics of four staggered hybrid zones in the house mouse and discuss whether they are examples of primary or secondary contact and whether they represent reticulate evolution or not. However, the most important aspect of staggered hybrid zones is that the homozygous populations within the zones have the potential to expand their distributions and become new races (a process termed ‘zonal raciation’). In this way they can add to the total ‘stock’ of chromosomal races in the species concerned. Speciation is an infrequent phenomenon that may involve an unusual set of circumstances. Each one of the products of zonal raciation has the potential to become a new species and by having more races increases the chance of a speciation event.
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spelling pubmed-39540892014-03-26 Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation Gündüz, İslam Pollock, Christianne L. Giménez, Mabel D. Förster, Daniel W. White, Thomas A. Sans-Fuentes, Maria A. Hauffe, Heidi C. Ventura, Jacint López-Fuster, María José Searle, Jeremy B. Genes (Basel) Review In the house mouse there are numerous chromosomal races distinguished by different combinations of metacentric chromosomes. These may come into contact with each other and with the ancestral all-acrocentric race, and form hybrid zones. The chromosomal clines that make up these hybrid zones may be coincident or separated from each other (staggered). Such staggered hybrid zones are interesting because they may include populations of individuals homozygous for a mix of features of the hybridising races. We review the characteristics of four staggered hybrid zones in the house mouse and discuss whether they are examples of primary or secondary contact and whether they represent reticulate evolution or not. However, the most important aspect of staggered hybrid zones is that the homozygous populations within the zones have the potential to expand their distributions and become new races (a process termed ‘zonal raciation’). In this way they can add to the total ‘stock’ of chromosomal races in the species concerned. Speciation is an infrequent phenomenon that may involve an unusual set of circumstances. Each one of the products of zonal raciation has the potential to become a new species and by having more races increases the chance of a speciation event. MDPI 2010-07-19 /pmc/articles/PMC3954089/ /pubmed/24710041 http://dx.doi.org/10.3390/genes1020193 Text en © 2010 by the authors; licensee MDPI, Basel, Switzerland http://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review
Gündüz, İslam
Pollock, Christianne L.
Giménez, Mabel D.
Förster, Daniel W.
White, Thomas A.
Sans-Fuentes, Maria A.
Hauffe, Heidi C.
Ventura, Jacint
López-Fuster, María José
Searle, Jeremy B.
Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation
title Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation
title_full Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation
title_fullStr Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation
title_full_unstemmed Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation
title_short Staggered Chromosomal Hybrid Zones in the House Mouse: Relevance to Reticulate Evolution and Speciation
title_sort staggered chromosomal hybrid zones in the house mouse: relevance to reticulate evolution and speciation
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3954089/
https://www.ncbi.nlm.nih.gov/pubmed/24710041
http://dx.doi.org/10.3390/genes1020193
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