The combined effects of temperature and exogenous bacterial sources on mortality in the Eastern oyster () under anoxia.

Fuente: PubMed
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Autori principali: Steeves, Laura, Winterburn, Keryn, Coffin, Michael R S, Babarro, Jose M F, Guyondet, Thomas, Comeau, Luc A, Filgueira, Ramón
Natura: Artículo científico
Lingua:en
Pubblicazione: Marine biology 2025
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author Steeves, Laura
Winterburn, Keryn
Coffin, Michael R S
Babarro, Jose M F
Guyondet, Thomas
Comeau, Luc A
Filgueira, Ramón
author_facet Steeves, Laura
Winterburn, Keryn
Coffin, Michael R S
Babarro, Jose M F
Guyondet, Thomas
Comeau, Luc A
Filgueira, Ramón
Steeves, Laura
Winterburn, Keryn
Coffin, Michael R S
Babarro, Jose M F
Guyondet, Thomas
Comeau, Luc A
Filgueira, Ramón
collection PubMed - marine biology
contents The combined effects of temperature and exogenous bacterial sources on mortality in the Eastern oyster () under anoxia. Steeves, Laura Winterburn, Keryn Coffin, Michael R S Babarro, Jose M F Guyondet, Thomas Comeau, Luc A Filgueira, Ramón In aquatic environments, low dissolved oxygen concentrations can result in depressed bivalve defense systems while promoting anaerobic bacterial growth, ultimately leading to increased bivalve mortality rates. Although the relationship between low oxygen availability and bivalve mortality has been previously examined, the mechanisms of mortality remain not well understood, limiting our ability to predict mass mortality events. In this study, the effect of anoxia ( The online version contains supplementary material available at 10.1007/s00227-025-04617-4.
format Artículo científico
id pubmed_40110181
institution PubMed
language en
publishDate 2025
publisher Marine biology
record_format pubmed
spellingShingle The combined effects of temperature and exogenous bacterial sources on mortality in the Eastern oyster () under anoxia.
Steeves, Laura
Winterburn, Keryn
Coffin, Michael R S
Babarro, Jose M F
Guyondet, Thomas
Comeau, Luc A
Filgueira, Ramón
The combined effects of temperature and exogenous bacterial sources on mortality in the Eastern oyster () under anoxia. Steeves, Laura Winterburn, Keryn Coffin, Michael R S Babarro, Jose M F Guyondet, Thomas Comeau, Luc A Filgueira, Ramón In aquatic environments, low dissolved oxygen concentrations can result in depressed bivalve defense systems while promoting anaerobic bacterial growth, ultimately leading to increased bivalve mortality rates. Although the relationship between low oxygen availability and bivalve mortality has been previously examined, the mechanisms of mortality remain not well understood, limiting our ability to predict mass mortality events. In this study, the effect of anoxia ( The online version contains supplementary material available at 10.1007/s00227-025-04617-4.
title The combined effects of temperature and exogenous bacterial sources on mortality in the Eastern oyster () under anoxia.
url https://pubmed.ncbi.nlm.nih.gov/40110181/