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Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation

Although many theoretical models of sympatric speciation propose that genes responsible for assortative mating amongst incipient species should be associated with genomic regions protected from recombination, there are few data to support this theory. The malaria mosquito, Anopheles gambiae, is know...

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Autores principales: Aboagye-Antwi, Fred, Alhafez, Nahla, Weedall, Gareth D., Brothwood, Jessica, Kandola, Sharanjit, Paton, Doug, Fofana, Abrahamane, Olohan, Lisa, Betancourth, Mauro Pazmiño, Ekechukwu, Nkiru E., Baeshen, Rowida, Traorè, Sékou F., Diabate, Abdoulaye, Tripet, Frédéric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4400153/
https://www.ncbi.nlm.nih.gov/pubmed/25880677
http://dx.doi.org/10.1371/journal.pgen.1005141
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author Aboagye-Antwi, Fred
Alhafez, Nahla
Weedall, Gareth D.
Brothwood, Jessica
Kandola, Sharanjit
Paton, Doug
Fofana, Abrahamane
Olohan, Lisa
Betancourth, Mauro Pazmiño
Ekechukwu, Nkiru E.
Baeshen, Rowida
Traorè, Sékou F.
Diabate, Abdoulaye
Tripet, Frédéric
author_facet Aboagye-Antwi, Fred
Alhafez, Nahla
Weedall, Gareth D.
Brothwood, Jessica
Kandola, Sharanjit
Paton, Doug
Fofana, Abrahamane
Olohan, Lisa
Betancourth, Mauro Pazmiño
Ekechukwu, Nkiru E.
Baeshen, Rowida
Traorè, Sékou F.
Diabate, Abdoulaye
Tripet, Frédéric
author_sort Aboagye-Antwi, Fred
collection PubMed
description Although many theoretical models of sympatric speciation propose that genes responsible for assortative mating amongst incipient species should be associated with genomic regions protected from recombination, there are few data to support this theory. The malaria mosquito, Anopheles gambiae, is known for its sympatric cryptic species maintained by pre-mating reproductive isolation and its putative genomic islands of speciation, and is therefore an ideal model system for studying the genomic signature associated with incipient sympatric speciation. Here we selectively introgressed the island of divergence located in the pericentric region of the X chromosome of An. gambiae s.s. into its sister taxon An. coluzzii through 5 generations of backcrossing followed by two generations of crosses within the introgressed strains that resulted in An. coluzzii-like recombinant strains fixed for the M and S marker in the X chromosome island. The mating preference of recombinant strains was then tested by giving virgin recombinant individuals a choice of mates with X-islands matching and non-matching their own island type. We show through genetic analyses of transferred sperm that recombinant females consistently mated with matching island-type males thereby associating assortative mating genes with the X-island of divergence. Furthermore, full-genome sequencing confirmed that protein-coding differences between recombinant strains were limited to the experimentally swapped pericentromeric region. Finally, targeted-genome comparisons showed that a number of these unique differences were conserved in sympatric field populations, thereby revealing candidate speciation genes. The functional demonstration of a close association between speciation genes and the X-island of differentiation lends unprecedented support to island-of-speciation models of sympatric speciation facilitated by pericentric recombination suppression.
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spelling pubmed-44001532015-04-21 Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation Aboagye-Antwi, Fred Alhafez, Nahla Weedall, Gareth D. Brothwood, Jessica Kandola, Sharanjit Paton, Doug Fofana, Abrahamane Olohan, Lisa Betancourth, Mauro Pazmiño Ekechukwu, Nkiru E. Baeshen, Rowida Traorè, Sékou F. Diabate, Abdoulaye Tripet, Frédéric PLoS Genet Research Article Although many theoretical models of sympatric speciation propose that genes responsible for assortative mating amongst incipient species should be associated with genomic regions protected from recombination, there are few data to support this theory. The malaria mosquito, Anopheles gambiae, is known for its sympatric cryptic species maintained by pre-mating reproductive isolation and its putative genomic islands of speciation, and is therefore an ideal model system for studying the genomic signature associated with incipient sympatric speciation. Here we selectively introgressed the island of divergence located in the pericentric region of the X chromosome of An. gambiae s.s. into its sister taxon An. coluzzii through 5 generations of backcrossing followed by two generations of crosses within the introgressed strains that resulted in An. coluzzii-like recombinant strains fixed for the M and S marker in the X chromosome island. The mating preference of recombinant strains was then tested by giving virgin recombinant individuals a choice of mates with X-islands matching and non-matching their own island type. We show through genetic analyses of transferred sperm that recombinant females consistently mated with matching island-type males thereby associating assortative mating genes with the X-island of divergence. Furthermore, full-genome sequencing confirmed that protein-coding differences between recombinant strains were limited to the experimentally swapped pericentromeric region. Finally, targeted-genome comparisons showed that a number of these unique differences were conserved in sympatric field populations, thereby revealing candidate speciation genes. The functional demonstration of a close association between speciation genes and the X-island of differentiation lends unprecedented support to island-of-speciation models of sympatric speciation facilitated by pericentric recombination suppression. Public Library of Science 2015-04-16 /pmc/articles/PMC4400153/ /pubmed/25880677 http://dx.doi.org/10.1371/journal.pgen.1005141 Text en © 2015 Aboagye-Antwi et al http://creativecommons.org/licenses/by/4.0/ 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 author and source are properly credited.
spellingShingle Research Article
Aboagye-Antwi, Fred
Alhafez, Nahla
Weedall, Gareth D.
Brothwood, Jessica
Kandola, Sharanjit
Paton, Doug
Fofana, Abrahamane
Olohan, Lisa
Betancourth, Mauro Pazmiño
Ekechukwu, Nkiru E.
Baeshen, Rowida
Traorè, Sékou F.
Diabate, Abdoulaye
Tripet, Frédéric
Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation
title Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation
title_full Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation
title_fullStr Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation
title_full_unstemmed Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation
title_short Experimental Swap of Anopheles gambiae's Assortative Mating Preferences Demonstrates Key Role of X-Chromosome Divergence Island in Incipient Sympatric Speciation
title_sort experimental swap of anopheles gambiae's assortative mating preferences demonstrates key role of x-chromosome divergence island in incipient sympatric speciation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4400153/
https://www.ncbi.nlm.nih.gov/pubmed/25880677
http://dx.doi.org/10.1371/journal.pgen.1005141
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