Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.

The mechanisms of stress tolerance in sessile animals, such as molluscs, can offer fundamental insights into the adaptation of organisms for a wide range of environmental challenges. One of the best studied processes at the molecular level relevant to stress tolerance is the heat shock response in t...

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Main Authors: Chrysa Pantzartzi, Elena Drosopoulou, Minas Yiangou, Ignat Drozdov, Sophia Tsoka, Christos A Ouzounis, Zacharias G Scouras
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS Computational Biology
Online Access:http://europepmc.org/articles/PMC2900285?pdf=render
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spelling doaj-28cec89af6ea4d1d84c29d2d81728a572020-11-24T23:48:47ZengPublic Library of Science (PLoS)PLoS Computational Biology1553-734X1553-73582010-01-0167e100084710.1371/journal.pcbi.1000847Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.Chrysa PantzartziElena DrosopoulouMinas YiangouIgnat DrozdovSophia TsokaChristos A OuzounisZacharias G ScourasThe mechanisms of stress tolerance in sessile animals, such as molluscs, can offer fundamental insights into the adaptation of organisms for a wide range of environmental challenges. One of the best studied processes at the molecular level relevant to stress tolerance is the heat shock response in the genus Mytilus. We focus on the upstream region of Mytilus galloprovincialis Hsp90 genes and their structural and functional associations, using comparative genomics and network inference. Sequence comparison of this region provides novel evidence that the transcription of Hsp90 is regulated via a dense region of transcription factor binding sites, also containing a region with similarity to the Gamera family of LINE-like repetitive sequences and a genus-specific element of unknown function. Furthermore, we infer a set of gene networks from tissue-specific expression data, and specifically extract an Hsp class-associated network, with 174 genes and 2,226 associations, exhibiting a complex pattern of expression across multiple tissue types. Our results (i) suggest that the heat shock response in the genus Mytilus is regulated by an unexpectedly complex upstream region, and (ii) provide new directions for the use of the heat shock process as a biosensor system for environmental monitoring.http://europepmc.org/articles/PMC2900285?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Chrysa Pantzartzi
Elena Drosopoulou
Minas Yiangou
Ignat Drozdov
Sophia Tsoka
Christos A Ouzounis
Zacharias G Scouras
spellingShingle Chrysa Pantzartzi
Elena Drosopoulou
Minas Yiangou
Ignat Drozdov
Sophia Tsoka
Christos A Ouzounis
Zacharias G Scouras
Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.
PLoS Computational Biology
author_facet Chrysa Pantzartzi
Elena Drosopoulou
Minas Yiangou
Ignat Drozdov
Sophia Tsoka
Christos A Ouzounis
Zacharias G Scouras
author_sort Chrysa Pantzartzi
title Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.
title_short Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.
title_full Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.
title_fullStr Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.
title_full_unstemmed Promoter complexity and tissue-specific expression of stress response components in Mytilus galloprovincialis, a sessile marine invertebrate species.
title_sort promoter complexity and tissue-specific expression of stress response components in mytilus galloprovincialis, a sessile marine invertebrate species.
publisher Public Library of Science (PLoS)
series PLoS Computational Biology
issn 1553-734X
1553-7358
publishDate 2010-01-01
description The mechanisms of stress tolerance in sessile animals, such as molluscs, can offer fundamental insights into the adaptation of organisms for a wide range of environmental challenges. One of the best studied processes at the molecular level relevant to stress tolerance is the heat shock response in the genus Mytilus. We focus on the upstream region of Mytilus galloprovincialis Hsp90 genes and their structural and functional associations, using comparative genomics and network inference. Sequence comparison of this region provides novel evidence that the transcription of Hsp90 is regulated via a dense region of transcription factor binding sites, also containing a region with similarity to the Gamera family of LINE-like repetitive sequences and a genus-specific element of unknown function. Furthermore, we infer a set of gene networks from tissue-specific expression data, and specifically extract an Hsp class-associated network, with 174 genes and 2,226 associations, exhibiting a complex pattern of expression across multiple tissue types. Our results (i) suggest that the heat shock response in the genus Mytilus is regulated by an unexpectedly complex upstream region, and (ii) provide new directions for the use of the heat shock process as a biosensor system for environmental monitoring.
url http://europepmc.org/articles/PMC2900285?pdf=render
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