Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr

Abstract Background Understanding the molecular basis of craniofacial variation can provide insights into key developmental mechanisms of adaptive changes and their role in trophic divergence and speciation. Arctic charr ( Salvelinus alpinus ) is a polymorphic fish species, and, in Lake Thingvallava...

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Main Authors: Ahi, Ehsan, Kapralova, Kalina, Pálsson, Arnar, Maier, Valerie, Gudbrandsson, Jóhannes, Snorrason, Sigurdur S, Jónsson, Zophonías O, Franzdóttir, Sigrídur
Format: Other/Unknown Material
Language:English
Published: BioMed Central Ltd. 2014
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Online Access:http://www.evodevojournal.com/content/5/1/40
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author Ahi, Ehsan
Kapralova, Kalina
Pálsson, Arnar
Maier, Valerie
Gudbrandsson, Jóhannes
Snorrason, Sigurdur S
Jónsson, Zophonías O
Franzdóttir, Sigrídur
author_facet Ahi, Ehsan
Kapralova, Kalina
Pálsson, Arnar
Maier, Valerie
Gudbrandsson, Jóhannes
Snorrason, Sigurdur S
Jónsson, Zophonías O
Franzdóttir, Sigrídur
author_sort Ahi, Ehsan
collection BioMed Central
description Abstract Background Understanding the molecular basis of craniofacial variation can provide insights into key developmental mechanisms of adaptive changes and their role in trophic divergence and speciation. Arctic charr ( Salvelinus alpinus ) is a polymorphic fish species, and, in Lake Thingvallavatn in Iceland, four sympatric morphs have evolved distinct craniofacial structures. We conducted a gene expression study on candidates from a conserved gene coexpression network, focusing on the development of craniofacial elements in embryos of two contrasting Arctic charr morphotypes (benthic and limnetic). Results Four Arctic charr morphs were studied: one limnetic and two benthic morphs from Lake Thingvallavatn and a limnetic reference aquaculture morph. The presence of morphological differences at developmental stages before the onset of feeding was verified by morphometric analysis. Following up on our previous findings that Mmp2 and Sparc were differentially expressed between morphotypes, we identified a network of genes with conserved coexpression across diverse vertebrate species. A comparative expression study of candidates from this network in developing heads of the four Arctic charr morphs verified the coexpression relationship of these genes and revealed distinct transcriptional dynamics strongly correlated with contrasting craniofacial morphologies (benthic versus limnetic). A literature review and Gene Ontology analysis indicated that a significant proportion of the network genes play a role in extracellular matrix organization and skeletogenesis, and motif enrichment analysis of conserved noncoding regions of network candidates predicted a handful of transcription factors, including Ap1 and Ets2 , as potential regulators of the gene network. The expression of Ets2 itself was also found to associate with network gene expression. Genes linked to glucocorticoid signalling were also studied, as both Mmp2 and Sparc are responsive to this pathway. Among those, several transcriptional targets and upstream regulators showed differential expression between the contrasting morphotypes. Interestingly, although selected network genes showed overlapping expression patterns in situ and no morph differences, Timp2 expression patterns differed between morphs. Conclusion Our comparative study of transcriptional dynamics in divergent craniofacial morphologies of Arctic charr revealed a conserved network of coexpressed genes sharing functional roles in structural morphogenesis. We also implicate transcriptional regulators of the network as .
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genre Arctic charr
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Salvelinus alpinus
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language English
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spelling ftbiomed:oai:biomedcentral.com:2041-9139-5-40 2025-01-16T19:59:17+00:00 Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr Ahi, Ehsan Kapralova, Kalina Pálsson, Arnar Maier, Valerie Gudbrandsson, Jóhannes Snorrason, Sigurdur S Jónsson, Zophonías O Franzdóttir, Sigrídur 2014-11-03 http://www.evodevojournal.com/content/5/1/40 en eng BioMed Central Ltd. http://www.evodevojournal.com/content/5/1/40 Copyright 2014 Ahi et al.; licensee BioMed Central Ltd. Arctic charr Coexpression Craniofacial development Divergent evolution Gene network Morphogenesis Salvelinus alpinus Research 2014 ftbiomed 2014-11-23T00:44:44Z Abstract Background Understanding the molecular basis of craniofacial variation can provide insights into key developmental mechanisms of adaptive changes and their role in trophic divergence and speciation. Arctic charr ( Salvelinus alpinus ) is a polymorphic fish species, and, in Lake Thingvallavatn in Iceland, four sympatric morphs have evolved distinct craniofacial structures. We conducted a gene expression study on candidates from a conserved gene coexpression network, focusing on the development of craniofacial elements in embryos of two contrasting Arctic charr morphotypes (benthic and limnetic). Results Four Arctic charr morphs were studied: one limnetic and two benthic morphs from Lake Thingvallavatn and a limnetic reference aquaculture morph. The presence of morphological differences at developmental stages before the onset of feeding was verified by morphometric analysis. Following up on our previous findings that Mmp2 and Sparc were differentially expressed between morphotypes, we identified a network of genes with conserved coexpression across diverse vertebrate species. A comparative expression study of candidates from this network in developing heads of the four Arctic charr morphs verified the coexpression relationship of these genes and revealed distinct transcriptional dynamics strongly correlated with contrasting craniofacial morphologies (benthic versus limnetic). A literature review and Gene Ontology analysis indicated that a significant proportion of the network genes play a role in extracellular matrix organization and skeletogenesis, and motif enrichment analysis of conserved noncoding regions of network candidates predicted a handful of transcription factors, including Ap1 and Ets2 , as potential regulators of the gene network. The expression of Ets2 itself was also found to associate with network gene expression. Genes linked to glucocorticoid signalling were also studied, as both Mmp2 and Sparc are responsive to this pathway. Among those, several transcriptional targets and upstream regulators showed differential expression between the contrasting morphotypes. Interestingly, although selected network genes showed overlapping expression patterns in situ and no morph differences, Timp2 expression patterns differed between morphs. Conclusion Our comparative study of transcriptional dynamics in divergent craniofacial morphologies of Arctic charr revealed a conserved network of coexpressed genes sharing functional roles in structural morphogenesis. We also implicate transcriptional regulators of the network as . Other/Unknown Material Arctic charr Arctic Iceland Salvelinus alpinus BioMed Central Arctic
spellingShingle Arctic charr
Coexpression
Craniofacial development
Divergent evolution
Gene network
Morphogenesis
Salvelinus alpinus
Ahi, Ehsan
Kapralova, Kalina
Pálsson, Arnar
Maier, Valerie
Gudbrandsson, Jóhannes
Snorrason, Sigurdur S
Jónsson, Zophonías O
Franzdóttir, Sigrídur
Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr
title Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr
title_full Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr
title_fullStr Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr
title_full_unstemmed Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr
title_short Transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in Arctic charr
title_sort transcriptional dynamics of a conserved gene expression network associated with craniofacial divergence in arctic charr
topic Arctic charr
Coexpression
Craniofacial development
Divergent evolution
Gene network
Morphogenesis
Salvelinus alpinus
topic_facet Arctic charr
Coexpression
Craniofacial development
Divergent evolution
Gene network
Morphogenesis
Salvelinus alpinus
url http://www.evodevojournal.com/content/5/1/40