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The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge

BACKGROUND: The vertebrate clade diverged into Chondrichthyes (sharks, rays, and chimeras) and Osteichthyes fishes (bony fishes) approximately 420 mya, with each group accumulating vast anatomical and physiological differences, including skin properties. The skin of Chondrichthyes fishes is covered...

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Autores principales: Doane, Michael P., Morris, Megan M., Papudeshi, Bhavya, Allen, Lauren, Pande, Dnyanada, Haggerty, John M., Johri, Shaili, Turnlund, Abigail C., Peterson, Meredith, Kacev, Dovi, Nosal, Andy, Ramirez, Deni, Hovel, Kevin, Ledbetter, Julia, Alker, Amanda, Avalos, Jackeline, Baker, Kristi, Bhide, Shruti, Billings, Emma, Byrum, Steven, Clemens, Molly, Demery, Amelia Juliette, Lima, Lais Farias Oliveira, Gomez, Oscar, Gutierrez, Omar, Hinton, Selena, Kieu, Donald, Kim, Angie, Loaiza, Rebeca, Martinez, Alexander, McGhee, Jordan, Nguyen, Kristine, Parlan, Sabrina, Pham, Amanda, Price-Waldman, Rosalyn, Edwards, Robert A., Dinsdale, Elizabeth A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7293782/
https://www.ncbi.nlm.nih.gov/pubmed/32534596
http://dx.doi.org/10.1186/s40168-020-00840-x
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author Doane, Michael P.
Morris, Megan M.
Papudeshi, Bhavya
Allen, Lauren
Pande, Dnyanada
Haggerty, John M.
Johri, Shaili
Turnlund, Abigail C.
Peterson, Meredith
Kacev, Dovi
Nosal, Andy
Ramirez, Deni
Hovel, Kevin
Ledbetter, Julia
Alker, Amanda
Avalos, Jackeline
Baker, Kristi
Bhide, Shruti
Billings, Emma
Byrum, Steven
Clemens, Molly
Demery, Amelia Juliette
Lima, Lais Farias Oliveira
Gomez, Oscar
Gutierrez, Omar
Hinton, Selena
Kieu, Donald
Kim, Angie
Loaiza, Rebeca
Martinez, Alexander
McGhee, Jordan
Nguyen, Kristine
Parlan, Sabrina
Pham, Amanda
Price-Waldman, Rosalyn
Edwards, Robert A.
Dinsdale, Elizabeth A.
author_facet Doane, Michael P.
Morris, Megan M.
Papudeshi, Bhavya
Allen, Lauren
Pande, Dnyanada
Haggerty, John M.
Johri, Shaili
Turnlund, Abigail C.
Peterson, Meredith
Kacev, Dovi
Nosal, Andy
Ramirez, Deni
Hovel, Kevin
Ledbetter, Julia
Alker, Amanda
Avalos, Jackeline
Baker, Kristi
Bhide, Shruti
Billings, Emma
Byrum, Steven
Clemens, Molly
Demery, Amelia Juliette
Lima, Lais Farias Oliveira
Gomez, Oscar
Gutierrez, Omar
Hinton, Selena
Kieu, Donald
Kim, Angie
Loaiza, Rebeca
Martinez, Alexander
McGhee, Jordan
Nguyen, Kristine
Parlan, Sabrina
Pham, Amanda
Price-Waldman, Rosalyn
Edwards, Robert A.
Dinsdale, Elizabeth A.
author_sort Doane, Michael P.
collection PubMed
description BACKGROUND: The vertebrate clade diverged into Chondrichthyes (sharks, rays, and chimeras) and Osteichthyes fishes (bony fishes) approximately 420 mya, with each group accumulating vast anatomical and physiological differences, including skin properties. The skin of Chondrichthyes fishes is covered in dermal denticles, whereas Osteichthyes fishes are covered in scales and are mucous rich. The divergence time among these two fish groups is hypothesized to result in predictable variation among symbionts. Here, using shotgun metagenomics, we test if patterns of diversity in the skin surface microbiome across the two fish clades match predictions made by phylosymbiosis theory. We hypothesize (1) the skin microbiome will be host and clade-specific, (2) evolutionary difference in elasmobranch and teleost will correspond with a concomitant increase in host-microbiome dissimilarity, and (3) the skin structure of the two groups will affect the taxonomic and functional composition of the microbiomes. RESULTS: We show that the taxonomic and functional composition of the microbiomes is host-specific. Teleost fish had lower average microbiome within clade similarity compared to among clade comparison, but their composition is not different among clade in a null based model. Elasmobranch’s average similarity within clade was not different than across clade and not different in a null based model of comparison. In the comparison of host distance with microbiome distance, we found that the taxonomic composition of the microbiome was related to host distance for the elasmobranchs, but not the teleost fishes. In comparison, the gene function composition was not related to the host-organism distance for elasmobranchs but was negatively correlated with host distance for teleost fishes. CONCLUSION: Our results show the patterns of phylosymbiosis are not consistent across both fish clades, with the elasmobranchs showing phylosymbiosis, while the teleost fish are not. The discrepancy may be linked to alternative processes underpinning microbiome assemblage, including possible historical host-microbiome evolution of the elasmobranchs and convergent evolution in the teleost which filter specific microbial groups. Our comparison of the microbiomes among fishes represents an investigation into the microbial relationships of the oldest divergence of extant vertebrate hosts and reveals that microbial relationships are not consistent across evolutionary timescales.
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spelling pubmed-72937822020-06-15 The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge Doane, Michael P. Morris, Megan M. Papudeshi, Bhavya Allen, Lauren Pande, Dnyanada Haggerty, John M. Johri, Shaili Turnlund, Abigail C. Peterson, Meredith Kacev, Dovi Nosal, Andy Ramirez, Deni Hovel, Kevin Ledbetter, Julia Alker, Amanda Avalos, Jackeline Baker, Kristi Bhide, Shruti Billings, Emma Byrum, Steven Clemens, Molly Demery, Amelia Juliette Lima, Lais Farias Oliveira Gomez, Oscar Gutierrez, Omar Hinton, Selena Kieu, Donald Kim, Angie Loaiza, Rebeca Martinez, Alexander McGhee, Jordan Nguyen, Kristine Parlan, Sabrina Pham, Amanda Price-Waldman, Rosalyn Edwards, Robert A. Dinsdale, Elizabeth A. Microbiome Research BACKGROUND: The vertebrate clade diverged into Chondrichthyes (sharks, rays, and chimeras) and Osteichthyes fishes (bony fishes) approximately 420 mya, with each group accumulating vast anatomical and physiological differences, including skin properties. The skin of Chondrichthyes fishes is covered in dermal denticles, whereas Osteichthyes fishes are covered in scales and are mucous rich. The divergence time among these two fish groups is hypothesized to result in predictable variation among symbionts. Here, using shotgun metagenomics, we test if patterns of diversity in the skin surface microbiome across the two fish clades match predictions made by phylosymbiosis theory. We hypothesize (1) the skin microbiome will be host and clade-specific, (2) evolutionary difference in elasmobranch and teleost will correspond with a concomitant increase in host-microbiome dissimilarity, and (3) the skin structure of the two groups will affect the taxonomic and functional composition of the microbiomes. RESULTS: We show that the taxonomic and functional composition of the microbiomes is host-specific. Teleost fish had lower average microbiome within clade similarity compared to among clade comparison, but their composition is not different among clade in a null based model. Elasmobranch’s average similarity within clade was not different than across clade and not different in a null based model of comparison. In the comparison of host distance with microbiome distance, we found that the taxonomic composition of the microbiome was related to host distance for the elasmobranchs, but not the teleost fishes. In comparison, the gene function composition was not related to the host-organism distance for elasmobranchs but was negatively correlated with host distance for teleost fishes. CONCLUSION: Our results show the patterns of phylosymbiosis are not consistent across both fish clades, with the elasmobranchs showing phylosymbiosis, while the teleost fish are not. The discrepancy may be linked to alternative processes underpinning microbiome assemblage, including possible historical host-microbiome evolution of the elasmobranchs and convergent evolution in the teleost which filter specific microbial groups. Our comparison of the microbiomes among fishes represents an investigation into the microbial relationships of the oldest divergence of extant vertebrate hosts and reveals that microbial relationships are not consistent across evolutionary timescales. BioMed Central 2020-06-13 /pmc/articles/PMC7293782/ /pubmed/32534596 http://dx.doi.org/10.1186/s40168-020-00840-x Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. 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 in a credit line to the data.
spellingShingle Research
Doane, Michael P.
Morris, Megan M.
Papudeshi, Bhavya
Allen, Lauren
Pande, Dnyanada
Haggerty, John M.
Johri, Shaili
Turnlund, Abigail C.
Peterson, Meredith
Kacev, Dovi
Nosal, Andy
Ramirez, Deni
Hovel, Kevin
Ledbetter, Julia
Alker, Amanda
Avalos, Jackeline
Baker, Kristi
Bhide, Shruti
Billings, Emma
Byrum, Steven
Clemens, Molly
Demery, Amelia Juliette
Lima, Lais Farias Oliveira
Gomez, Oscar
Gutierrez, Omar
Hinton, Selena
Kieu, Donald
Kim, Angie
Loaiza, Rebeca
Martinez, Alexander
McGhee, Jordan
Nguyen, Kristine
Parlan, Sabrina
Pham, Amanda
Price-Waldman, Rosalyn
Edwards, Robert A.
Dinsdale, Elizabeth A.
The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge
title The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge
title_full The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge
title_fullStr The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge
title_full_unstemmed The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge
title_short The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge
title_sort skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7293782/
https://www.ncbi.nlm.nih.gov/pubmed/32534596
http://dx.doi.org/10.1186/s40168-020-00840-x
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