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Hypoxic guts in two small benthic copepods, Tachidius discipes and Nitocra spinipes
Martin, B.; Oguri, K.; Boon, N.; De Troch, M.; Glud, R. (2026). Hypoxic guts in two small benthic copepods, Tachidius discipes and Nitocra spinipes. Mar. Ecol. Prog. Ser. 791: 1-7. https://dx.doi.org/10.3354/meps15191
In: Marine Ecology Progress Series. Inter-Research: Oldendorf/Luhe. ISSN 0171-8630; e-ISSN 1616-1599, more
Peer reviewed article  

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Keywords
    Anaerobic processes
    Depletion > Oxygen depletion > Anoxia
    Excretory products > Faecal pellets
    Nitokra spinipes spinipes Boeck, 1865 [WoRMS]; Tachidius discipes Giesbrecht, 1881 [WoRMS]
Author keywords
    Hyposia; Gut microbiome; Optical O2 sensing 

Authors  Top 
  • Martin, B., more
  • Oguri, K.
  • Boon, N., more

Abstract
    Copepod guts host intensified microbial activity, forming oxygen-depleted or even anoxic microenvironments in otherwise oxic realms. This may have important implications for element cycling and biogeochemical processing. However, current studies have only targeted relatively large zooplankton specimens ignoring ubiquitous, omnipresent small (<1 mm) copepod species. Using oxygen sensitive nanobeads and a phosphorescence imaging approach, we imaged the internal O2 distribution of living copepods for 2 small species with benthic lifestyles: Tachidius discipes and Nitocra spinipes. The internal hypoxic O2 distribution was strongly dependent on position and content within the gut and on the ambient O2 levels experienced by the animals. Anoxia was only rarely encountered, but extrapolations and measurements at lower ambient O2 levels strongly suggest that even small copepods will have anoxic interiors when exposed to O2-depleted environments such as surface sediments, detrital-enriched material patches or pelagic oxygen minimum zones.

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