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  4. Non-invasive investigation of the morphology and optical properties of the upside-down jellyfish Cassiopea with optical coherence tomography
 
research article

Non-invasive investigation of the morphology and optical properties of the upside-down jellyfish Cassiopea with optical coherence tomography

Lyndby, Niclas Heidelberg  
•
Murthy, Swathi
•
Bessette, Sandrine  
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September 27, 2023
Proceedings Of The Royal Society B-Biological Sciences

The jellyfish Cassiopea largely cover their carbon demand via photosynthates produced by microalgal endosymbionts, but how holobiont morphology and tissue optical properties affect the light microclimate and symbiont photosynthesis in Cassiopea remain unexplored. Here, we use optical coherence tomography (OCT) to study the morphology of Cassiopea medusae at high spatial resolution. We include detailed 3D reconstructions of external micromorphology, and show the spatial distribution of endosymbionts and white granules in the bell tissue. Furthermore, we use OCT data to extract inherent optical properties from light-scattering white granules in Cassiopea, and show that granules enhance local light-availability for symbionts in close proximity. Individual granules had a scattering coefficient of mu(s) = 200-300 cm(-1), and scattering anisotropy factor of g = 0.7, while large tissue-regions filled with white granules had a lower mu(s) = 40-100 cm(-1), and g = 0.8-0.9. We combined OCT information with isotopic labelling experiments to investigate the effect of enhanced light-availability in whitish tissue regions. Endosymbionts located in whitish tissue exhibited significantly higher carbon fixation compared to symbionts in anastomosing tissue (i.e. tissue without light-scattering white granules). Our findings support previous suggestions that white granules in Cassiopea play an important role in the host modulation of the light-microenvironment.

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Type
research article
DOI
10.1098/rspb.2023.0127
Web of Science ID

WOS:001075769200005

Author(s)
Lyndby, Niclas Heidelberg  
Murthy, Swathi
Bessette, Sandrine  
Jakobsen, Sofie Lindegaard
Meibom, Anders  
Kuhl, Michael
Date Issued

2023-09-27

Publisher

ROYAL SOC

Published in
Proceedings Of The Royal Society B-Biological Sciences
Volume

290

Issue

2007

Article Number

20230127

Subjects

Biology

•

Ecology

•

Evolutionary Biology

•

Life Sciences & Biomedicine - Other Topics

•

Environmental Sciences & Ecology

•

cnidaria

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symbiosis

•

chlorophyll fluorescence

•

optical properties

•

nanosims

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blue mesogleal protein

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scattering

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dinoflagellate

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assimilation

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technology

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absorption

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pigments

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carbon

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LGB  
Available on Infoscience
October 23, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/201790
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