Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>

<p>Abstract</p> <p>Background</p> <p>Cichlid fishes are notorious for their wealth of intra- and interspecific colour pattern diversity. In Lake Tanganyika, the endemic genus <it>Tropheus </it>represents the most impressive example for geographic variation i...

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Main Authors: Sturmbauer Christian, Koblmüller Stephan, Egger Bernd, Sefc Kristina M
Format: Article
Language:English
Published: BMC 2007-08-01
Series:BMC Evolutionary Biology
Online Access:http://www.biomedcentral.com/1471-2148/7/137
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spelling doaj-a82e2a76c75c43c58034e68a99a71bed2021-09-02T10:02:00ZengBMCBMC Evolutionary Biology1471-21482007-08-017113710.1186/1471-2148-7-137Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>Sturmbauer ChristianKoblmüller StephanEgger BerndSefc Kristina M<p>Abstract</p> <p>Background</p> <p>Cichlid fishes are notorious for their wealth of intra- and interspecific colour pattern diversity. In Lake Tanganyika, the endemic genus <it>Tropheus </it>represents the most impressive example for geographic variation in the pattern and hue of integument colouration, but the taxonomy of the over 100 mostly allopatric colour morphs remains to a large degree unresolved. Previous studies of mitochondrial DNA sequence data revealed polyphyly of the six nominally described species and complex phylogeographic patterns influenced by lake level fluctuations and population admixture, and suggested the parallel evolution of similar colour patterns in divergent evolutionary lineages. A gene tree of a rapidly radiating group may be subject to incomplete and stochastic lineage sorting, and to overcome this problem we used multi-locus, nuclear AFLP data in comparison with mtDNA sequences to study diversification, migration and introgression in <it>Tropheus </it>colour morphs in Lake Tanganyika.</p> <p>Results</p> <p>Significant incongruence between phylogenetic reconstructions from mitochondrial and AFLP data suggested incomplete sorting of mitochondrial haplotypes as well as frequent introgression between differentiated lineages. In contrast to the mitochondrial phylogeny, the AFLP phenogram was largely congruent with species classifications, colour pattern similarities, and in many cases also with the current geographic distribution of populations, and did not produce evidence of convergent colour pattern evolution. Homoplasy in the AFLP data was used to identify populations that were strongly affected by introgression.</p> <p>Conclusion</p> <p>Different evolutionary processes were distinguished by the combination of mitochondrial and AFLP data. Mitochondrial phylogeographic patterns retained signals of large-scale migration events triggered by historical, major lake level fluctuations, whereas AFLP data indicated genetic cohesion among local groups of populations resulting from secondary contact of adjacent populations in the course of the more frequently occurring, minor lake level fluctuations. There was no support for the parallel evolution of similar colour patterns in the AFLP data. Genetic signatures of introgression and hybridisation detected in several populations suggest that lake level fluctuations drove the stunning diversification of <it>Tropheus </it>morphs not only through population fragmentation, but also by promoting hybridisation between differentiated morphs in secondary contact.</p> http://www.biomedcentral.com/1471-2148/7/137
collection DOAJ
language English
format Article
sources DOAJ
author Sturmbauer Christian
Koblmüller Stephan
Egger Bernd
Sefc Kristina M
spellingShingle Sturmbauer Christian
Koblmüller Stephan
Egger Bernd
Sefc Kristina M
Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>
BMC Evolutionary Biology
author_facet Sturmbauer Christian
Koblmüller Stephan
Egger Bernd
Sefc Kristina M
author_sort Sturmbauer Christian
title Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>
title_short Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>
title_full Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>
title_fullStr Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>
title_full_unstemmed Nuclear and mitochondrial data reveal different evolutionary processes in the Lake Tanganyika cichlid genus <it>Tropheus</it>
title_sort nuclear and mitochondrial data reveal different evolutionary processes in the lake tanganyika cichlid genus <it>tropheus</it>
publisher BMC
series BMC Evolutionary Biology
issn 1471-2148
publishDate 2007-08-01
description <p>Abstract</p> <p>Background</p> <p>Cichlid fishes are notorious for their wealth of intra- and interspecific colour pattern diversity. In Lake Tanganyika, the endemic genus <it>Tropheus </it>represents the most impressive example for geographic variation in the pattern and hue of integument colouration, but the taxonomy of the over 100 mostly allopatric colour morphs remains to a large degree unresolved. Previous studies of mitochondrial DNA sequence data revealed polyphyly of the six nominally described species and complex phylogeographic patterns influenced by lake level fluctuations and population admixture, and suggested the parallel evolution of similar colour patterns in divergent evolutionary lineages. A gene tree of a rapidly radiating group may be subject to incomplete and stochastic lineage sorting, and to overcome this problem we used multi-locus, nuclear AFLP data in comparison with mtDNA sequences to study diversification, migration and introgression in <it>Tropheus </it>colour morphs in Lake Tanganyika.</p> <p>Results</p> <p>Significant incongruence between phylogenetic reconstructions from mitochondrial and AFLP data suggested incomplete sorting of mitochondrial haplotypes as well as frequent introgression between differentiated lineages. In contrast to the mitochondrial phylogeny, the AFLP phenogram was largely congruent with species classifications, colour pattern similarities, and in many cases also with the current geographic distribution of populations, and did not produce evidence of convergent colour pattern evolution. Homoplasy in the AFLP data was used to identify populations that were strongly affected by introgression.</p> <p>Conclusion</p> <p>Different evolutionary processes were distinguished by the combination of mitochondrial and AFLP data. Mitochondrial phylogeographic patterns retained signals of large-scale migration events triggered by historical, major lake level fluctuations, whereas AFLP data indicated genetic cohesion among local groups of populations resulting from secondary contact of adjacent populations in the course of the more frequently occurring, minor lake level fluctuations. There was no support for the parallel evolution of similar colour patterns in the AFLP data. Genetic signatures of introgression and hybridisation detected in several populations suggest that lake level fluctuations drove the stunning diversification of <it>Tropheus </it>morphs not only through population fragmentation, but also by promoting hybridisation between differentiated morphs in secondary contact.</p>
url http://www.biomedcentral.com/1471-2148/7/137
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