Host starvation and in hospite degradation of algal symbionts shape the heat stress response of the Cassiopea-Symbiodiniaceae symbiosis
Toullec, G.; Radecker, N.; Pogoreutz, C.; Banc Prandi, G.; Escrig, S.; Genoud, C.; Martin Olmos, C.; Spangenberg, J.; Meibom, A.
Show abstract
Global warming is causing large-scale disruption of cnidarian-Symbiodiniaceae symbioses fundamental to major marine ecosystems, such as coral reefs. However, the mechanisms by which heat stress perturbs these symbiotic partnerships remain poorly understood. In this context, the upside-down jellyfish Cassiopea has emerged as a powerful experimental model system. We combined a controlled heat stress experiment with isotope labeling and correlative SEM-NanoSIMS imaging to show that host starvation is a central component in the chain of events that ultimately leads to the collapse of the Cassiopea holobiont. Heat stress caused an increase in catabolic activity and a depletion of carbon reserves in the unfed host, concurrent with a reduction in the supply of photosynthates from its algal symbionts. This state of host starvation was accompanied by pronounced in hospite degradation of algal symbionts, which may be a distinct feature of the heat stress response of Cassiopea. Interestingly, this loss of symbionts by degradation was to a large extent concealed by body shrinkage of the starving animals, resulting in what could be referred to as invisible bleaching. Overall, our study highlights the importance of the nutritional status in the heat stress response of the Cassiopea holobiont. Compared with other symbiotic cnidarians, the large mesoglea of Cassiopea, with its structural sugar and protein content, may constitute an energy reservoir capable of delaying starvation. It seems plausible that this anatomical feature at least partly contributes to the relatively high stress tolerance of these animals in our warming oceans.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Light-harvesting in mesophotic corals is powered by a spatially efficient photosymbiotic system between coral host and microalgae 93%
- Acclimation temperature and parasite infection drive metabolic changes in a freshwater fish at different biological scales 93%
- Foraging strategies under extreme events: Contrasting adaptations by benthic macrofauna to drastic biogeochemical disturbance 93%
Similar papers in this journal
- Heat-evolved algal symbionts enhance bleaching tolerance of adult corals without trade-off against growth 96%
- Marine heatwaves depress metabolic activity and impair cellular acid-base homeostasis in reef-building corals regardless of bleaching susceptibility 95%
- Dispersal provides trophic-level dependent insurance against a heatwave in freshwater ecosystems 95%
Similar papers in this journal
- Exposure to global change and microplastics elicits an immune response in an endangered coral 95%
- Divergent transcriptional response to thermal stress among life stages could constrain coral adaptation to climate change 95%
- Anatomy and Symbiosis of the digestive system of the vent shrimps Rimicaris exoculata and Rimicaris chacei revealed through imaging approaches. 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.