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A depauperate immune repertoire precedes evolution of sociality in bees

BACKGROUND: Sociality has many rewards, but can also be dangerous, as high population density and low genetic diversity, common in social insects, is ideal for parasite transmission. Despite this risk, honeybees and other sequenced social insects have far fewer canonical immune genes relative to sol...

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Autores principales: Barribeau, Seth M, Sadd, Ben M, du Plessis, Louis, Brown, Mark JF, Buechel, Severine D, Cappelle, Kaat, Carolan, James C, Christiaens, Olivier, Colgan, Thomas J, Erler, Silvio, Evans, Jay, Helbing, Sophie, Karaus, Elke, Lattorff, H Michael G, Marxer, Monika, Meeus, Ivan, Näpflin, Kathrin, Niu, Jinzhi, Schmid-Hempel, Regula, Smagghe, Guy, Waterhouse, Robert M, Yu, Na, Zdobnov, Evgeny M, Schmid-Hempel, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4408586/
https://www.ncbi.nlm.nih.gov/pubmed/25908406
http://dx.doi.org/10.1186/s13059-015-0628-y
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author Barribeau, Seth M
Sadd, Ben M
du Plessis, Louis
Brown, Mark JF
Buechel, Severine D
Cappelle, Kaat
Carolan, James C
Christiaens, Olivier
Colgan, Thomas J
Erler, Silvio
Evans, Jay
Helbing, Sophie
Karaus, Elke
Lattorff, H Michael G
Marxer, Monika
Meeus, Ivan
Näpflin, Kathrin
Niu, Jinzhi
Schmid-Hempel, Regula
Smagghe, Guy
Waterhouse, Robert M
Yu, Na
Zdobnov, Evgeny M
Schmid-Hempel, Paul
author_facet Barribeau, Seth M
Sadd, Ben M
du Plessis, Louis
Brown, Mark JF
Buechel, Severine D
Cappelle, Kaat
Carolan, James C
Christiaens, Olivier
Colgan, Thomas J
Erler, Silvio
Evans, Jay
Helbing, Sophie
Karaus, Elke
Lattorff, H Michael G
Marxer, Monika
Meeus, Ivan
Näpflin, Kathrin
Niu, Jinzhi
Schmid-Hempel, Regula
Smagghe, Guy
Waterhouse, Robert M
Yu, Na
Zdobnov, Evgeny M
Schmid-Hempel, Paul
author_sort Barribeau, Seth M
collection PubMed
description BACKGROUND: Sociality has many rewards, but can also be dangerous, as high population density and low genetic diversity, common in social insects, is ideal for parasite transmission. Despite this risk, honeybees and other sequenced social insects have far fewer canonical immune genes relative to solitary insects. Social protection from infection, including behavioral responses, may explain this depauperate immune repertoire. Here, based on full genome sequences, we describe the immune repertoire of two ecologically and commercially important bumblebee species that diverged approximately 18 million years ago, the North American Bombus impatiens and European Bombus terrestris. RESULTS: We find that the immune systems of these bumblebees, two species of honeybee, and a solitary leafcutting bee, are strikingly similar. Transcriptional assays confirm the expression of many of these genes in an immunological context and more strongly in young queens than males, affirming Bateman’s principle of greater investment in female immunity. We find evidence of positive selection in genes encoding antiviral responses, components of the Toll and JAK/STAT pathways, and serine protease inhibitors in both social and solitary bees. Finally, we detect many genes across pathways that differ in selection between bumblebees and honeybees, or between the social and solitary clades. CONCLUSIONS: The similarity in immune complement across a gradient of sociality suggests that a reduced immune repertoire predates the evolution of sociality in bees. The differences in selection on immune genes likely reflect divergent pressures exerted by parasites across social contexts. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13059-015-0628-y) contains supplementary material, which is available to authorized users.
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spelling pubmed-44085862015-04-25 A depauperate immune repertoire precedes evolution of sociality in bees Barribeau, Seth M Sadd, Ben M du Plessis, Louis Brown, Mark JF Buechel, Severine D Cappelle, Kaat Carolan, James C Christiaens, Olivier Colgan, Thomas J Erler, Silvio Evans, Jay Helbing, Sophie Karaus, Elke Lattorff, H Michael G Marxer, Monika Meeus, Ivan Näpflin, Kathrin Niu, Jinzhi Schmid-Hempel, Regula Smagghe, Guy Waterhouse, Robert M Yu, Na Zdobnov, Evgeny M Schmid-Hempel, Paul Genome Biol Research BACKGROUND: Sociality has many rewards, but can also be dangerous, as high population density and low genetic diversity, common in social insects, is ideal for parasite transmission. Despite this risk, honeybees and other sequenced social insects have far fewer canonical immune genes relative to solitary insects. Social protection from infection, including behavioral responses, may explain this depauperate immune repertoire. Here, based on full genome sequences, we describe the immune repertoire of two ecologically and commercially important bumblebee species that diverged approximately 18 million years ago, the North American Bombus impatiens and European Bombus terrestris. RESULTS: We find that the immune systems of these bumblebees, two species of honeybee, and a solitary leafcutting bee, are strikingly similar. Transcriptional assays confirm the expression of many of these genes in an immunological context and more strongly in young queens than males, affirming Bateman’s principle of greater investment in female immunity. We find evidence of positive selection in genes encoding antiviral responses, components of the Toll and JAK/STAT pathways, and serine protease inhibitors in both social and solitary bees. Finally, we detect many genes across pathways that differ in selection between bumblebees and honeybees, or between the social and solitary clades. CONCLUSIONS: The similarity in immune complement across a gradient of sociality suggests that a reduced immune repertoire predates the evolution of sociality in bees. The differences in selection on immune genes likely reflect divergent pressures exerted by parasites across social contexts. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13059-015-0628-y) contains supplementary material, which is available to authorized users. BioMed Central 2015-04-24 2015 /pmc/articles/PMC4408586/ /pubmed/25908406 http://dx.doi.org/10.1186/s13059-015-0628-y Text en © Barribeau et al.; licensee BioMed Central. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Barribeau, Seth M
Sadd, Ben M
du Plessis, Louis
Brown, Mark JF
Buechel, Severine D
Cappelle, Kaat
Carolan, James C
Christiaens, Olivier
Colgan, Thomas J
Erler, Silvio
Evans, Jay
Helbing, Sophie
Karaus, Elke
Lattorff, H Michael G
Marxer, Monika
Meeus, Ivan
Näpflin, Kathrin
Niu, Jinzhi
Schmid-Hempel, Regula
Smagghe, Guy
Waterhouse, Robert M
Yu, Na
Zdobnov, Evgeny M
Schmid-Hempel, Paul
A depauperate immune repertoire precedes evolution of sociality in bees
title A depauperate immune repertoire precedes evolution of sociality in bees
title_full A depauperate immune repertoire precedes evolution of sociality in bees
title_fullStr A depauperate immune repertoire precedes evolution of sociality in bees
title_full_unstemmed A depauperate immune repertoire precedes evolution of sociality in bees
title_short A depauperate immune repertoire precedes evolution of sociality in bees
title_sort depauperate immune repertoire precedes evolution of sociality in bees
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4408586/
https://www.ncbi.nlm.nih.gov/pubmed/25908406
http://dx.doi.org/10.1186/s13059-015-0628-y
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