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Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists

Mutualistic interactions with microbes have played a crucial role in the evolution and ecology of animal hosts. However, it is unclear what factors are most important in influencing particular host–microbe associations. While closely related animal species may have more similar microbiota than dista...

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Autores principales: Ivens, Aniek B. F., Gadau, Alice, Kiers, E. Toby, Kronauer, Daniel J. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5935579/
https://www.ncbi.nlm.nih.gov/pubmed/29411455
http://dx.doi.org/10.1111/mec.14506
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author Ivens, Aniek B. F.
Gadau, Alice
Kiers, E. Toby
Kronauer, Daniel J. C.
author_facet Ivens, Aniek B. F.
Gadau, Alice
Kiers, E. Toby
Kronauer, Daniel J. C.
author_sort Ivens, Aniek B. F.
collection PubMed
description Mutualistic interactions with microbes have played a crucial role in the evolution and ecology of animal hosts. However, it is unclear what factors are most important in influencing particular host–microbe associations. While closely related animal species may have more similar microbiota than distantly related species due to phylogenetic contingencies, social partnerships with other organisms, such as those in which one animal farms another, may also influence an organism's symbiotic microbiome. We studied a mutualistic network of Brachymyrmex and Lasius ants farming several honeydew‐producing Prociphilus aphids and Rhizoecus mealybugs to test whether the mutualistic microbiomes of these interacting insects are primarily correlated with their phylogeny or with their shared social partnerships. Our results confirm a phylogenetic signal in the microbiomes of aphid and mealybug trophobionts, with each species harbouring species‐specific endosymbiont strains of Buchnera (aphids), Tremblaya and Sodalis (mealybugs), and Serratia (both mealybugs and aphids) despite being farmed by the same ants. This is likely explained by strict vertical transmission of trophobiont endosymbionts between generations. In contrast, our results show the ants’ microbiome is possibly shaped by their social partnerships, with ants that farm the same trophobionts also sharing strains of sugar‐processing Acetobacteraceae bacteria, known from other honeydew‐feeding ants and which likely reside extracellularly in the ants’ guts. These ant–microbe associations are arguably more “open” and subject to horizontal transmission or social transmission within ant colonies. These findings suggest that the role of social partnerships in shaping a host's symbiotic microbiome can be variable and is likely dependent on how the microbes are transmitted across generations.
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spelling pubmed-59355792018-05-30 Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists Ivens, Aniek B. F. Gadau, Alice Kiers, E. Toby Kronauer, Daniel J. C. Mol Ecol Structure of the Microbiome Mutualistic interactions with microbes have played a crucial role in the evolution and ecology of animal hosts. However, it is unclear what factors are most important in influencing particular host–microbe associations. While closely related animal species may have more similar microbiota than distantly related species due to phylogenetic contingencies, social partnerships with other organisms, such as those in which one animal farms another, may also influence an organism's symbiotic microbiome. We studied a mutualistic network of Brachymyrmex and Lasius ants farming several honeydew‐producing Prociphilus aphids and Rhizoecus mealybugs to test whether the mutualistic microbiomes of these interacting insects are primarily correlated with their phylogeny or with their shared social partnerships. Our results confirm a phylogenetic signal in the microbiomes of aphid and mealybug trophobionts, with each species harbouring species‐specific endosymbiont strains of Buchnera (aphids), Tremblaya and Sodalis (mealybugs), and Serratia (both mealybugs and aphids) despite being farmed by the same ants. This is likely explained by strict vertical transmission of trophobiont endosymbionts between generations. In contrast, our results show the ants’ microbiome is possibly shaped by their social partnerships, with ants that farm the same trophobionts also sharing strains of sugar‐processing Acetobacteraceae bacteria, known from other honeydew‐feeding ants and which likely reside extracellularly in the ants’ guts. These ant–microbe associations are arguably more “open” and subject to horizontal transmission or social transmission within ant colonies. These findings suggest that the role of social partnerships in shaping a host's symbiotic microbiome can be variable and is likely dependent on how the microbes are transmitted across generations. John Wiley and Sons Inc. 2018-03-15 2018-04 /pmc/articles/PMC5935579/ /pubmed/29411455 http://dx.doi.org/10.1111/mec.14506 Text en © 2018 The Authors. Molecular Ecology Published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Structure of the Microbiome
Ivens, Aniek B. F.
Gadau, Alice
Kiers, E. Toby
Kronauer, Daniel J. C.
Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists
title Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists
title_full Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists
title_fullStr Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists
title_full_unstemmed Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists
title_short Can social partnerships influence the microbiome? Insights from ant farmers and their trophobiont mutualists
title_sort can social partnerships influence the microbiome? insights from ant farmers and their trophobiont mutualists
topic Structure of the Microbiome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5935579/
https://www.ncbi.nlm.nih.gov/pubmed/29411455
http://dx.doi.org/10.1111/mec.14506
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