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Updated: Jun 2, 2026

An Integrated Micro-Device System for Coral Growth and Monitoring
Published on: July 21, 2023
Active host control of the internal O2 microenvironment in reef-building corals
Qingfeng Zhang1, Elena Bollati1, Cesar O Pacherres1
1Marine Biology Section, Department of Biology, University of Copenhagen, Strandpromenaden 5, 3000 Helsingor, Denmark.
None:
The gastrovascular cavity of corals plays a central role in internal circulation, digestion, reproduction, and symbiont acquisition. However, despite its importance, our understanding of the physic-chemical characteristics and dynamic properties of this internal microenvironment remains limited. Here, we employ high-resolution microsensor measurements to investigate the vertical distribution of O2 within the coral gastrovascular cavity. By combining microsensor analysis with time-lapse imaging, we show that O2 levels inside corals are strongly affected by slow, synchronized tissue movements, suggesting a mechanism of active ventilation through modulation of cavity volume and exchange with the surrounding seawater. Together with cilia beating, these movements reduce O2 accumulation under light conditions and alleviate O2 depletion in darkness, thereby stabilizing internal O2 availability. These findings highlight a hitherto overlooked role of behavior in actively regulating the internal microenvironment and O2 status of the coral holobiont and provide critical insight into the organism-environment interactions of reef-building corals.
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