Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales

Unveiling the factors and processes that shape the dynamics of host associated microbial communities (microbiota) under natural conditions is an important part of understanding and predicting an organism's response to a changing environment. The microbiota is shaped by host (i.e., genetic) fact...

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Published in:Frontiers in Microbiology
Main Authors: Lokmer, A., Goedknegt, M., Thieltges, D., Fiorentino, D., Künzel, S., Baines, J., Wegner, K.
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/11858/00-001M-0000-002C-3AE6-4
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spelling ftpubman:oai:pure.mpg.de:item_2382187 2023-08-27T04:11:27+02:00 Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales Lokmer, A. Goedknegt, M. Thieltges, D. Fiorentino, D. Künzel, S. Baines, J. Wegner, K. 2016-08 http://hdl.handle.net/11858/00-001M-0000-002C-3AE6-4 eng eng info:eu-repo/semantics/altIdentifier/doi/10.3389/fmicb.2016.01367 http://hdl.handle.net/11858/00-001M-0000-002C-3AE6-4 Frontiers in Microbiology info:eu-repo/semantics/article 2016 ftpubman https://doi.org/10.3389/fmicb.2016.01367 2023-08-02T02:01:02Z Unveiling the factors and processes that shape the dynamics of host associated microbial communities (microbiota) under natural conditions is an important part of understanding and predicting an organism's response to a changing environment. The microbiota is shaped by host (i.e., genetic) factors as well as by the biotic and abiotic environment. Studying natural variation of microbial community composition in multiple host genetic backgrounds across spatial as well as temporal scales represents a means to untangle this complex interplay. Here, we combined a spatially-stratified with a longitudinal sampling scheme within differentiated host genetic backgrounds by reciprocally transplanting Pacific oysters between two sites in the Wadden Sea (Sylt and Texel). To further differentiate contingent site from host genetic effects, we repeatedly sampled the same individuals over a summer season to examine structure, diversity and dynamics of individual hemolymph microbiota following experimental removal of resident microbiota by antibiotic treatment. While a large proportion of microbiome variation could be attributed to immediate environmental conditions, we observed persistent effects of antibiotic treatment and translocation suggesting that hemolymph microbial community dynamics is subject to within-microbiome interactions and host population specific factors. In addition, the analysis of spatial variation revealed that the within-site microenvironmental heterogeneity resulted in high small-scale variability, as opposed to large-scale (between-site) stability. Similarly, considerable within-individual temporal variability was in contrast with the overall temporal stability at the site level. Overall, our longitudinal, spatially-stratified sampling design revealed that variation in hemolymph microbiota is strongly influenced by site and immediate environmental conditions, whereas internal microbiome dynamics and oyster-related factors add to their long-term stability. The combination of small and large scale ... Article in Journal/Newspaper Pacific oyster Max Planck Society: MPG.PuRe Pacific Frontiers in Microbiology 7
institution Open Polar
collection Max Planck Society: MPG.PuRe
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language English
description Unveiling the factors and processes that shape the dynamics of host associated microbial communities (microbiota) under natural conditions is an important part of understanding and predicting an organism's response to a changing environment. The microbiota is shaped by host (i.e., genetic) factors as well as by the biotic and abiotic environment. Studying natural variation of microbial community composition in multiple host genetic backgrounds across spatial as well as temporal scales represents a means to untangle this complex interplay. Here, we combined a spatially-stratified with a longitudinal sampling scheme within differentiated host genetic backgrounds by reciprocally transplanting Pacific oysters between two sites in the Wadden Sea (Sylt and Texel). To further differentiate contingent site from host genetic effects, we repeatedly sampled the same individuals over a summer season to examine structure, diversity and dynamics of individual hemolymph microbiota following experimental removal of resident microbiota by antibiotic treatment. While a large proportion of microbiome variation could be attributed to immediate environmental conditions, we observed persistent effects of antibiotic treatment and translocation suggesting that hemolymph microbial community dynamics is subject to within-microbiome interactions and host population specific factors. In addition, the analysis of spatial variation revealed that the within-site microenvironmental heterogeneity resulted in high small-scale variability, as opposed to large-scale (between-site) stability. Similarly, considerable within-individual temporal variability was in contrast with the overall temporal stability at the site level. Overall, our longitudinal, spatially-stratified sampling design revealed that variation in hemolymph microbiota is strongly influenced by site and immediate environmental conditions, whereas internal microbiome dynamics and oyster-related factors add to their long-term stability. The combination of small and large scale ...
format Article in Journal/Newspaper
author Lokmer, A.
Goedknegt, M.
Thieltges, D.
Fiorentino, D.
Künzel, S.
Baines, J.
Wegner, K.
spellingShingle Lokmer, A.
Goedknegt, M.
Thieltges, D.
Fiorentino, D.
Künzel, S.
Baines, J.
Wegner, K.
Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales
author_facet Lokmer, A.
Goedknegt, M.
Thieltges, D.
Fiorentino, D.
Künzel, S.
Baines, J.
Wegner, K.
author_sort Lokmer, A.
title Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales
title_short Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales
title_full Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales
title_fullStr Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales
title_full_unstemmed Spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales
title_sort spatial and temporal dynamics of pacific oyster hemolymph microbiota across multiple scales
publishDate 2016
url http://hdl.handle.net/11858/00-001M-0000-002C-3AE6-4
geographic Pacific
geographic_facet Pacific
genre Pacific oyster
genre_facet Pacific oyster
op_source Frontiers in Microbiology
op_relation info:eu-repo/semantics/altIdentifier/doi/10.3389/fmicb.2016.01367
http://hdl.handle.net/11858/00-001M-0000-002C-3AE6-4
op_doi https://doi.org/10.3389/fmicb.2016.01367
container_title Frontiers in Microbiology
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