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Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium

BACKGROUND: Whole genome transcriptomic analysis is a powerful approach to elucidate the molecular mechanisms controlling the pathogenesis of obligate intracellular bacteria. However, the major hurdle resides in the low quantity of prokaryotic mRNAs extracted from host cells. Our model Ehrlichia rum...

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Autores principales: Emboulé, Loïc, Daigle, France, Meyer, Damien F, Mari, Bernard, Pinarello, Valérie, Sheikboudou, Christian, Magnone, Virginie, Frutos, Roger, Viari, Alain, Barbry, Pascal, Martinez, Dominique, Lefrançois, Thierry, Vachiéry, Nathalie
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2806407/
https://www.ncbi.nlm.nih.gov/pubmed/20034374
http://dx.doi.org/10.1186/1471-2199-10-111
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author Emboulé, Loïc
Daigle, France
Meyer, Damien F
Mari, Bernard
Pinarello, Valérie
Sheikboudou, Christian
Magnone, Virginie
Frutos, Roger
Viari, Alain
Barbry, Pascal
Martinez, Dominique
Lefrançois, Thierry
Vachiéry, Nathalie
author_facet Emboulé, Loïc
Daigle, France
Meyer, Damien F
Mari, Bernard
Pinarello, Valérie
Sheikboudou, Christian
Magnone, Virginie
Frutos, Roger
Viari, Alain
Barbry, Pascal
Martinez, Dominique
Lefrançois, Thierry
Vachiéry, Nathalie
author_sort Emboulé, Loïc
collection PubMed
description BACKGROUND: Whole genome transcriptomic analysis is a powerful approach to elucidate the molecular mechanisms controlling the pathogenesis of obligate intracellular bacteria. However, the major hurdle resides in the low quantity of prokaryotic mRNAs extracted from host cells. Our model Ehrlichia ruminantium (ER), the causative agent of heartwater, is transmitted by tick Amblyomma variegatum. This bacterium affects wild and domestic ruminants and is present in Sub-Saharan Africa and the Caribbean islands. Because of its strictly intracellular location, which constitutes a limitation for its extensive study, the molecular mechanisms involved in its pathogenicity are still poorly understood. RESULTS: We successfully adapted the SCOTS method (Selective Capture of Transcribed Sequences) on the model Rickettsiales ER to capture mRNAs. Southern Blots and RT-PCR revealed an enrichment of ER's cDNAs and a diminution of ribosomal contaminants after three rounds of capture. qRT-PCR and whole-genome ER microarrays hybridizations demonstrated that SCOTS method introduced only a limited bias on gene expression. Indeed, we confirmed the differential gene expression between poorly and highly expressed genes before and after SCOTS captures. The comparative gene expression obtained from ER microarrays data, on samples before and after SCOTS at 96 hpi was significantly correlated (R(2 )= 0.7). Moreover, SCOTS method is crucial for microarrays analysis of ER, especially for early time points post-infection. There was low detection of transcripts for untreated samples whereas 24% and 70.7% were revealed for SCOTS samples at 24 and 96 hpi respectively. CONCLUSIONS: We conclude that this SCOTS method has a key importance for the transcriptomic analysis of ER and can be potentially used for other Rickettsiales. This study constitutes the first step for further gene expression analyses that will lead to a better understanding of both ER pathogenicity and the adaptation of obligate intracellular bacteria to their environment.
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spelling pubmed-28064072010-01-14 Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium Emboulé, Loïc Daigle, France Meyer, Damien F Mari, Bernard Pinarello, Valérie Sheikboudou, Christian Magnone, Virginie Frutos, Roger Viari, Alain Barbry, Pascal Martinez, Dominique Lefrançois, Thierry Vachiéry, Nathalie BMC Mol Biol Methodology article BACKGROUND: Whole genome transcriptomic analysis is a powerful approach to elucidate the molecular mechanisms controlling the pathogenesis of obligate intracellular bacteria. However, the major hurdle resides in the low quantity of prokaryotic mRNAs extracted from host cells. Our model Ehrlichia ruminantium (ER), the causative agent of heartwater, is transmitted by tick Amblyomma variegatum. This bacterium affects wild and domestic ruminants and is present in Sub-Saharan Africa and the Caribbean islands. Because of its strictly intracellular location, which constitutes a limitation for its extensive study, the molecular mechanisms involved in its pathogenicity are still poorly understood. RESULTS: We successfully adapted the SCOTS method (Selective Capture of Transcribed Sequences) on the model Rickettsiales ER to capture mRNAs. Southern Blots and RT-PCR revealed an enrichment of ER's cDNAs and a diminution of ribosomal contaminants after three rounds of capture. qRT-PCR and whole-genome ER microarrays hybridizations demonstrated that SCOTS method introduced only a limited bias on gene expression. Indeed, we confirmed the differential gene expression between poorly and highly expressed genes before and after SCOTS captures. The comparative gene expression obtained from ER microarrays data, on samples before and after SCOTS at 96 hpi was significantly correlated (R(2 )= 0.7). Moreover, SCOTS method is crucial for microarrays analysis of ER, especially for early time points post-infection. There was low detection of transcripts for untreated samples whereas 24% and 70.7% were revealed for SCOTS samples at 24 and 96 hpi respectively. CONCLUSIONS: We conclude that this SCOTS method has a key importance for the transcriptomic analysis of ER and can be potentially used for other Rickettsiales. This study constitutes the first step for further gene expression analyses that will lead to a better understanding of both ER pathogenicity and the adaptation of obligate intracellular bacteria to their environment. BioMed Central 2009-12-24 /pmc/articles/PMC2806407/ /pubmed/20034374 http://dx.doi.org/10.1186/1471-2199-10-111 Text en Copyright ©2009 Emboulé et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology article
Emboulé, Loïc
Daigle, France
Meyer, Damien F
Mari, Bernard
Pinarello, Valérie
Sheikboudou, Christian
Magnone, Virginie
Frutos, Roger
Viari, Alain
Barbry, Pascal
Martinez, Dominique
Lefrançois, Thierry
Vachiéry, Nathalie
Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium
title Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium
title_full Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium
title_fullStr Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium
title_full_unstemmed Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium
title_short Innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of Ehrlichia ruminantium
title_sort innovative approach for transcriptomic analysis of obligate intracellular pathogen: selective capture of transcribed sequences of ehrlichia ruminantium
topic Methodology article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2806407/
https://www.ncbi.nlm.nih.gov/pubmed/20034374
http://dx.doi.org/10.1186/1471-2199-10-111
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