Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis

Microbial symbionts of marine sponges play important roles for the hosts and also for their ecosystems. The unique tolerance of marine sponges to a wide diversity of microbial symbionts allows them to acquire a wide variety of “evolutionary solutions” to environmental challenges. Ice scour is one of...

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Published in:Frontiers in Ecology and Evolution
Main Authors: Rodolfo Rondon, Marcelo González-Aravena, Alejandro Font, Magdalena Osorio, César A. Cárdenas
Format: Article in Journal/Newspaper
Language:English
Published: Frontiers Media S.A. 2020
Subjects:
Online Access:https://doi.org/10.3389/fevo.2020.00262
https://doaj.org/article/7540dee963be419c9121b9469f5981a3
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spelling ftdoajarticles:oai:doaj.org/article:7540dee963be419c9121b9469f5981a3 2023-05-15T13:57:21+02:00 Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis Rodolfo Rondon Marcelo González-Aravena Alejandro Font Magdalena Osorio César A. Cárdenas 2020-09-01T00:00:00Z https://doi.org/10.3389/fevo.2020.00262 https://doaj.org/article/7540dee963be419c9121b9469f5981a3 EN eng Frontiers Media S.A. https://www.frontiersin.org/article/10.3389/fevo.2020.00262/full https://doaj.org/toc/2296-701X 2296-701X doi:10.3389/fevo.2020.00262 https://doaj.org/article/7540dee963be419c9121b9469f5981a3 Frontiers in Ecology and Evolution, Vol 8 (2020) microbiome Porifera benthic communities tissue injury heat-stress ice scour disturbance Evolution QH359-425 Ecology QH540-549.5 article 2020 ftdoajarticles https://doi.org/10.3389/fevo.2020.00262 2022-12-31T04:05:22Z Microbial symbionts of marine sponges play important roles for the hosts and also for their ecosystems. The unique tolerance of marine sponges to a wide diversity of microbial symbionts allows them to acquire a wide variety of “evolutionary solutions” to environmental challenges. Ice scour is one of the main forces structuring Antarctic benthic communities, and its effect is expected to increase as further warming is projected for the Western Antarctic Peninsula (WAP). The interaction of these physical drivers may have a significant impact, shaping the microbiome of Antarctic sponges under current and future scenarios of climate change. The aim of this research was to assess how stressors, such as warming and injuries produced by ice scour, affect the microbiome of the marine Antarctic sponge Isodictya kerguelenensis under current and predicted scenarios. Individuals of I. kerguelenensis were sampled in shallow waters (10 m) off the coast of Doumer Island, Palmer Archipelago, WAP. In order to mimic the effect of tissue damage produced by ice scour, tissue samples were taken at days 0 (T0d) and 15 (T15d) from individuals placed in a control (0.5°C) and two temperature treatments (3 and 6°C). Our analysis of 16S libraries from the V4–V5 region revealed two phyla of archaea and 22 of bacteria. Proteobacteria and Bacteroidetes were the most representative in terms of both number of operational taxonomic units (OTUs) and sequence abundances. The analysis at the OTU level shows a significant interactive effect of injury and temperature. Principal coordinate analysis (PCoA) shows a clear group of uninjured sponges and three other groups of injured sponges according to temperature. Our results also show a group of OTUs that were only present in injured sponges and are potential markers of sponge damage. Our study suggests that the disturbance produced by icebergs may have a direct impact on the sponge microbiome. Future climate change scenarios with warming and increases in iceberg impacts may lead to prokaryotic ... Article in Journal/Newspaper Antarc* Antarctic Antarctic Peninsula Doumer Island Iceberg* Palmer Archipelago Directory of Open Access Journals: DOAJ Articles Antarctic Antarctic Peninsula Doumer ENVELOPE(-63.583,-63.583,-64.850,-64.850) Doumer Island ENVELOPE(-63.551,-63.551,-64.850,-64.850) Palmer Archipelago ENVELOPE(-62.833,-62.833,-64.250,-64.250) The Antarctic Frontiers in Ecology and Evolution 8
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
topic microbiome
Porifera
benthic communities
tissue injury
heat-stress
ice scour disturbance
Evolution
QH359-425
Ecology
QH540-549.5
spellingShingle microbiome
Porifera
benthic communities
tissue injury
heat-stress
ice scour disturbance
Evolution
QH359-425
Ecology
QH540-549.5
Rodolfo Rondon
Marcelo González-Aravena
Alejandro Font
Magdalena Osorio
César A. Cárdenas
Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis
topic_facet microbiome
Porifera
benthic communities
tissue injury
heat-stress
ice scour disturbance
Evolution
QH359-425
Ecology
QH540-549.5
description Microbial symbionts of marine sponges play important roles for the hosts and also for their ecosystems. The unique tolerance of marine sponges to a wide diversity of microbial symbionts allows them to acquire a wide variety of “evolutionary solutions” to environmental challenges. Ice scour is one of the main forces structuring Antarctic benthic communities, and its effect is expected to increase as further warming is projected for the Western Antarctic Peninsula (WAP). The interaction of these physical drivers may have a significant impact, shaping the microbiome of Antarctic sponges under current and future scenarios of climate change. The aim of this research was to assess how stressors, such as warming and injuries produced by ice scour, affect the microbiome of the marine Antarctic sponge Isodictya kerguelenensis under current and predicted scenarios. Individuals of I. kerguelenensis were sampled in shallow waters (10 m) off the coast of Doumer Island, Palmer Archipelago, WAP. In order to mimic the effect of tissue damage produced by ice scour, tissue samples were taken at days 0 (T0d) and 15 (T15d) from individuals placed in a control (0.5°C) and two temperature treatments (3 and 6°C). Our analysis of 16S libraries from the V4–V5 region revealed two phyla of archaea and 22 of bacteria. Proteobacteria and Bacteroidetes were the most representative in terms of both number of operational taxonomic units (OTUs) and sequence abundances. The analysis at the OTU level shows a significant interactive effect of injury and temperature. Principal coordinate analysis (PCoA) shows a clear group of uninjured sponges and three other groups of injured sponges according to temperature. Our results also show a group of OTUs that were only present in injured sponges and are potential markers of sponge damage. Our study suggests that the disturbance produced by icebergs may have a direct impact on the sponge microbiome. Future climate change scenarios with warming and increases in iceberg impacts may lead to prokaryotic ...
format Article in Journal/Newspaper
author Rodolfo Rondon
Marcelo González-Aravena
Alejandro Font
Magdalena Osorio
César A. Cárdenas
author_facet Rodolfo Rondon
Marcelo González-Aravena
Alejandro Font
Magdalena Osorio
César A. Cárdenas
author_sort Rodolfo Rondon
title Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis
title_short Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis
title_full Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis
title_fullStr Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis
title_full_unstemmed Effects of Climate Change Stressors on the Prokaryotic Communities of the Antarctic Sponge Isodictya kerguelenensis
title_sort effects of climate change stressors on the prokaryotic communities of the antarctic sponge isodictya kerguelenensis
publisher Frontiers Media S.A.
publishDate 2020
url https://doi.org/10.3389/fevo.2020.00262
https://doaj.org/article/7540dee963be419c9121b9469f5981a3
long_lat ENVELOPE(-63.583,-63.583,-64.850,-64.850)
ENVELOPE(-63.551,-63.551,-64.850,-64.850)
ENVELOPE(-62.833,-62.833,-64.250,-64.250)
geographic Antarctic
Antarctic Peninsula
Doumer
Doumer Island
Palmer Archipelago
The Antarctic
geographic_facet Antarctic
Antarctic Peninsula
Doumer
Doumer Island
Palmer Archipelago
The Antarctic
genre Antarc*
Antarctic
Antarctic Peninsula
Doumer Island
Iceberg*
Palmer Archipelago
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Doumer Island
Iceberg*
Palmer Archipelago
op_source Frontiers in Ecology and Evolution, Vol 8 (2020)
op_relation https://www.frontiersin.org/article/10.3389/fevo.2020.00262/full
https://doaj.org/toc/2296-701X
2296-701X
doi:10.3389/fevo.2020.00262
https://doaj.org/article/7540dee963be419c9121b9469f5981a3
op_doi https://doi.org/10.3389/fevo.2020.00262
container_title Frontiers in Ecology and Evolution
container_volume 8
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