Climate change alters the haemolymph microbiome of oysters
Climate change alters the haemolymph microbiome of oysters
The wellbeing of marine organisms is connected to their microbiome. Oysters are a vital food source and provide ecological services, yet little is known about how climate change such as ocean acidification and warming will affect their microbiome. We exposed the Sydney rock oyster, Saccostrea glomerata, to orthogonal combinations of temperature (24, 28 °C) and pCO2 (400 and 1000 μatm) for eight weeks and used amplicon sequencing of the 16S rRNA (V3-V4) gene to characterise the bacterial community in haemolymph. Overall, elevated pCO2 and temperature interacted to alter the microbiome of oysters, with a clear partitioning of treatments in CAP ordinations. Elevated pCO2 was the strongest driver of species diversity and richness and elevated temperature also increased species richness. Climate change, both ocean acidification and warming, will alter the microbiome of S. glomerata which may increase the susceptibility of oysters to disease.
Aquaculture, Bivalve, Climate change, Microbiome, Ocean acidification, Oyster
Scanes, Elliot
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Parker, Laura M.
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Seymour, Justin R.
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Siboni, Nachshon
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King, William L.
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Danckert, Nathan P.
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Wegner, K. Mathias
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Dove, Michael C.
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O'Connor, Wayne A.
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Ross, Pauline M.
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1 March 2021
Scanes, Elliot
421bdfea-6925-4309-b7d3-6a4074d87e72
Parker, Laura M.
38cc3625-0173-4e30-94bb-0db0abf20de7
Seymour, Justin R.
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Siboni, Nachshon
cd5ba51e-896e-4b3f-be74-ab136fd96675
King, William L.
0bd4328a-34ba-4b9a-bf4e-1442c18c43fc
Danckert, Nathan P.
e2ba7693-9e21-42b7-b3d9-cec2e05ee191
Wegner, K. Mathias
dc9c6c48-14ca-4e8c-8916-f35fc2a78233
Dove, Michael C.
bfeb35ed-73fa-42b2-8c2a-8f07ee8a0acc
O'Connor, Wayne A.
31b4e663-682f-448c-8236-a53dc9604c81
Ross, Pauline M.
cc721111-eadc-4411-a9a8-687c7f449ca8
Scanes, Elliot, Parker, Laura M., Seymour, Justin R., Siboni, Nachshon, King, William L., Danckert, Nathan P., Wegner, K. Mathias, Dove, Michael C., O'Connor, Wayne A. and Ross, Pauline M.
(2021)
Climate change alters the haemolymph microbiome of oysters.
Marine Pollution Bulletin, 164, [111991].
(doi:10.1016/j.marpolbul.2021.111991).
Abstract
The wellbeing of marine organisms is connected to their microbiome. Oysters are a vital food source and provide ecological services, yet little is known about how climate change such as ocean acidification and warming will affect their microbiome. We exposed the Sydney rock oyster, Saccostrea glomerata, to orthogonal combinations of temperature (24, 28 °C) and pCO2 (400 and 1000 μatm) for eight weeks and used amplicon sequencing of the 16S rRNA (V3-V4) gene to characterise the bacterial community in haemolymph. Overall, elevated pCO2 and temperature interacted to alter the microbiome of oysters, with a clear partitioning of treatments in CAP ordinations. Elevated pCO2 was the strongest driver of species diversity and richness and elevated temperature also increased species richness. Climate change, both ocean acidification and warming, will alter the microbiome of S. glomerata which may increase the susceptibility of oysters to disease.
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Published date: 1 March 2021
Additional Information:
Funding Information:
The authors wish to acknowledge Stephen O'Connor, Brandt Archer, Greg Kent, Nick Gibson and Kyle Johnston at the Port Stephens Fisheries Institute for their help with the experiment and algal culture. This project was funded by a Science and Innovation Award from the Australian Department of Agriculture and Water Resources.
Publisher Copyright:
© 2021 Elsevier Ltd
Keywords:
Aquaculture, Bivalve, Climate change, Microbiome, Ocean acidification, Oyster
Identifiers
Local EPrints ID: 486608
URI: http://eprints.soton.ac.uk/id/eprint/486608
ISSN: 0025-326X
PURE UUID: 2aab649f-135b-466d-8fb3-5c915bee2578
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Date deposited: 26 Jan 2024 18:00
Last modified: 18 Mar 2024 04:18
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Contributors
Author:
Elliot Scanes
Author:
Laura M. Parker
Author:
Justin R. Seymour
Author:
Nachshon Siboni
Author:
William L. King
Author:
Nathan P. Danckert
Author:
K. Mathias Wegner
Author:
Michael C. Dove
Author:
Wayne A. O'Connor
Author:
Pauline M. Ross
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