Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemertea

<p>Abstract</p> <p>Background</p> <p>The new animal phylogeny established several taxa which were not identified by morphological analyses, most prominently the Ecdysozoa (arthropods, roundworms, priapulids and others) and Lophotrochozoa (molluscs, annelids, brachiopods...

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Main Authors: von Döhren Jörn, Struck Torsten H, Braband Anke, Podsiadlowski Lars, Bartolomaeus Thomas
Format: Article
Language:English
Published: BMC 2009-08-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/10/364
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spelling doaj-081a570dc22049948f2a735804f0df642020-11-25T02:28:17ZengBMCBMC Genomics1471-21642009-08-0110136410.1186/1471-2164-10-364Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemerteavon Döhren JörnStruck Torsten HBraband AnkePodsiadlowski LarsBartolomaeus Thomas<p>Abstract</p> <p>Background</p> <p>The new animal phylogeny established several taxa which were not identified by morphological analyses, most prominently the Ecdysozoa (arthropods, roundworms, priapulids and others) and Lophotrochozoa (molluscs, annelids, brachiopods and others). Lophotrochozoan interrelationships are under discussion, e.g. regarding the position of Nemertea (ribbon worms), which were discussed to be sister group to e.g. Mollusca, Brachiozoa or Platyhelminthes. Mitochondrial genomes contributed well with sequence data and gene order characters to the deep metazoan phylogeny debate.</p> <p>Results</p> <p>In this study we present the first complete mitochondrial genome record for a member of the Nemertea, <it>Lineus viridis</it>. Except two <it>trnP </it>and <it>trnT</it>, all genes are located on the same strand. While gene order is most similar to that of the brachiopod <it>Terebratulina retusa</it>, sequence based analyses of mitochondrial genes place nemerteans close to molluscs, phoronids and entoprocts without clear preference for one of these taxa as sister group.</p> <p>Conclusion</p> <p>Almost all recent analyses with large datasets show good support for a taxon comprising Annelida, Mollusca, Brachiopoda, Phoronida and Nemertea. But the relationships among these taxa vary between different studies. The analysis of gene order differences gives evidence for a multiple independent occurrence of a large inversion in the mitochondrial genome of Lophotrochozoa and a re-inversion of the same part in gastropods. We hypothesize that some regions of the genome have a higher chance for intramolecular recombination than others and gene order data have to be analysed carefully to detect convergent rearrangement events.</p> http://www.biomedcentral.com/1471-2164/10/364
collection DOAJ
language English
format Article
sources DOAJ
author von Döhren Jörn
Struck Torsten H
Braband Anke
Podsiadlowski Lars
Bartolomaeus Thomas
spellingShingle von Döhren Jörn
Struck Torsten H
Braband Anke
Podsiadlowski Lars
Bartolomaeus Thomas
Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemertea
BMC Genomics
author_facet von Döhren Jörn
Struck Torsten H
Braband Anke
Podsiadlowski Lars
Bartolomaeus Thomas
author_sort von Döhren Jörn
title Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemertea
title_short Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemertea
title_full Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemertea
title_fullStr Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemertea
title_full_unstemmed Phylogeny and mitochondrial gene order variation in Lophotrochozoa in the light of new mitogenomic data from Nemertea
title_sort phylogeny and mitochondrial gene order variation in lophotrochozoa in the light of new mitogenomic data from nemertea
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2009-08-01
description <p>Abstract</p> <p>Background</p> <p>The new animal phylogeny established several taxa which were not identified by morphological analyses, most prominently the Ecdysozoa (arthropods, roundworms, priapulids and others) and Lophotrochozoa (molluscs, annelids, brachiopods and others). Lophotrochozoan interrelationships are under discussion, e.g. regarding the position of Nemertea (ribbon worms), which were discussed to be sister group to e.g. Mollusca, Brachiozoa or Platyhelminthes. Mitochondrial genomes contributed well with sequence data and gene order characters to the deep metazoan phylogeny debate.</p> <p>Results</p> <p>In this study we present the first complete mitochondrial genome record for a member of the Nemertea, <it>Lineus viridis</it>. Except two <it>trnP </it>and <it>trnT</it>, all genes are located on the same strand. While gene order is most similar to that of the brachiopod <it>Terebratulina retusa</it>, sequence based analyses of mitochondrial genes place nemerteans close to molluscs, phoronids and entoprocts without clear preference for one of these taxa as sister group.</p> <p>Conclusion</p> <p>Almost all recent analyses with large datasets show good support for a taxon comprising Annelida, Mollusca, Brachiopoda, Phoronida and Nemertea. But the relationships among these taxa vary between different studies. The analysis of gene order differences gives evidence for a multiple independent occurrence of a large inversion in the mitochondrial genome of Lophotrochozoa and a re-inversion of the same part in gastropods. We hypothesize that some regions of the genome have a higher chance for intramolecular recombination than others and gene order data have to be analysed carefully to detect convergent rearrangement events.</p>
url http://www.biomedcentral.com/1471-2164/10/364
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