The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)

<p>Abstract</p> <p>Background</p> <p>In <it>Drosophila</it>, the Enhancer of split complex (E(spl)-C) comprises 11 bHLH and Bearded genes that function during Notch signaling to repress proneural identity in the developing peripheral nervous system. Comparis...

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Main Authors: Baker Richard H, Kuehl Jennifer V, Wilkinson Gerald S
Format: Article
Language:English
Published: BMC 2011-12-01
Series:BMC Evolutionary Biology
Subjects:
Online Access:http://www.biomedcentral.com/1471-2148/11/354
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spelling doaj-f6f619c804d54decbf151a250b629a6b2021-09-02T04:18:20ZengBMCBMC Evolutionary Biology1471-21482011-12-0111135410.1186/1471-2148-11-354The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)Baker Richard HKuehl Jennifer VWilkinson Gerald S<p>Abstract</p> <p>Background</p> <p>In <it>Drosophila</it>, the Enhancer of split complex (E(spl)-C) comprises 11 bHLH and Bearded genes that function during Notch signaling to repress proneural identity in the developing peripheral nervous system. Comparison with other insects indicates that the basal state for Diptera is a single bHLH and Bearded homolog and that the expansion of the gene complex occurred in the lineage leading to <it>Drosophila</it>. However, comparative genomic data from other fly species that would elucidate the origin and sequence of gene duplication for the complex is lacking. Therefore, in order to examine the evolutionary history of the complex within Diptera, we reconstructed, using several fosmid clones, the entire E(spl)-complex in the stalk-eyed fly, <it>Teleopsis dalmanni </it>and collected additional homologs of E(spl)-C genes from searches of dipteran EST databases and the <it>Glossina morsitans </it>genome assembly.</p> <p>Results</p> <p>Comparison of the <it>Teleopsis </it>E(spl)-C gene organization with <it>Drosophila </it>indicates complete conservation in gene number and orientation between the species except that <it>T. dalmanni </it>contains a duplicated copy of <it>E(spl)m5 </it>that is not present in <it>Drosophila</it>. Phylogenetic analysis of E(spl)-complex bHLH and Bearded genes for several dipteran species clearly demonstrates that all members of the complex were present prior to the diversification of schizophoran flies. Comparison of upstream regulatory elements and 3' UTR domains between the species also reveals strong conservation for many of the genes and identifies several novel characteristics of E(spl)-C regulatory evolution including the discovery of a previously unidentified, highly conserved SPS+A domain between <it>E(spl)mγ </it>and <it>E(spl)mβ</it>.</p> <p>Conclusion</p> <p>Identifying the phylogenetic origin of E(spl)-C genes and their associated regulatory DNA is essential to understanding the functional significance of this well-studied gene complex. Results from this study provide numerous insights into the evolutionary history of the complex and will help refine the focus of studies examining the adaptive consequences of this gene expansion.</p> http://www.biomedcentral.com/1471-2148/11/354Enhancer of split complexstalk-eyed flygene duplicationSPS+A domain
collection DOAJ
language English
format Article
sources DOAJ
author Baker Richard H
Kuehl Jennifer V
Wilkinson Gerald S
spellingShingle Baker Richard H
Kuehl Jennifer V
Wilkinson Gerald S
The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)
BMC Evolutionary Biology
Enhancer of split complex
stalk-eyed fly
gene duplication
SPS+A domain
author_facet Baker Richard H
Kuehl Jennifer V
Wilkinson Gerald S
author_sort Baker Richard H
title The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)
title_short The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)
title_full The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)
title_fullStr The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)
title_full_unstemmed The Enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>Drosophila </it>and stalk-eyed flies (Diopsidae)
title_sort enhancer of split complex arose prior to the diversification of schizophoran flies and is strongly conserved between <it>drosophila </it>and stalk-eyed flies (diopsidae)
publisher BMC
series BMC Evolutionary Biology
issn 1471-2148
publishDate 2011-12-01
description <p>Abstract</p> <p>Background</p> <p>In <it>Drosophila</it>, the Enhancer of split complex (E(spl)-C) comprises 11 bHLH and Bearded genes that function during Notch signaling to repress proneural identity in the developing peripheral nervous system. Comparison with other insects indicates that the basal state for Diptera is a single bHLH and Bearded homolog and that the expansion of the gene complex occurred in the lineage leading to <it>Drosophila</it>. However, comparative genomic data from other fly species that would elucidate the origin and sequence of gene duplication for the complex is lacking. Therefore, in order to examine the evolutionary history of the complex within Diptera, we reconstructed, using several fosmid clones, the entire E(spl)-complex in the stalk-eyed fly, <it>Teleopsis dalmanni </it>and collected additional homologs of E(spl)-C genes from searches of dipteran EST databases and the <it>Glossina morsitans </it>genome assembly.</p> <p>Results</p> <p>Comparison of the <it>Teleopsis </it>E(spl)-C gene organization with <it>Drosophila </it>indicates complete conservation in gene number and orientation between the species except that <it>T. dalmanni </it>contains a duplicated copy of <it>E(spl)m5 </it>that is not present in <it>Drosophila</it>. Phylogenetic analysis of E(spl)-complex bHLH and Bearded genes for several dipteran species clearly demonstrates that all members of the complex were present prior to the diversification of schizophoran flies. Comparison of upstream regulatory elements and 3' UTR domains between the species also reveals strong conservation for many of the genes and identifies several novel characteristics of E(spl)-C regulatory evolution including the discovery of a previously unidentified, highly conserved SPS+A domain between <it>E(spl)mγ </it>and <it>E(spl)mβ</it>.</p> <p>Conclusion</p> <p>Identifying the phylogenetic origin of E(spl)-C genes and their associated regulatory DNA is essential to understanding the functional significance of this well-studied gene complex. Results from this study provide numerous insights into the evolutionary history of the complex and will help refine the focus of studies examining the adaptive consequences of this gene expansion.</p>
topic Enhancer of split complex
stalk-eyed fly
gene duplication
SPS+A domain
url http://www.biomedcentral.com/1471-2148/11/354
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