[HTML][HTML] Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - Scientific reports, 2016 - nature.com
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …

[PDF][PDF] Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - vliz.be
Results Energy acquisition during heat stress and recovery. Significant changes in coral
physiology occurred during heat stress (day 28) compared to the control condition (Figs 1 …

[HTML][HTML] Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - Scientific …, 2016 - ncbi.nlm.nih.gov
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …

Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - Scientific …, 2016 - insu.hal.science
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …

Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - Scientific Reports, 2016 - hal.science
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …

Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer… - Scientific …, 2016 - pubmed.ncbi.nlm.nih.gov
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …

Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - Scientific …, 2016 - hal.univ-brest.fr
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …

[PDF][PDF] Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - core.ac.uk
Results Energy acquisition during heat stress and recovery. Significant changes in coral
physiology occurred during heat stress (day 28) compared to the control condition (Figs 1 …

Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress.

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - Scientific …, 2016 - europepmc.org
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …

Heterotrophy promotes the re-establishment of photosynthate translocation in a symbiotic coral after heat stress

P Tremblay, A Gori, JF Maguer, M Hoogenboom… - Scientific …, 2016 - hero.epa.gov
Symbiotic scleractinian corals are particularly affected by climate change stress and respond
by bleaching (losing their symbiotic dinoflagellate partners). Recently, the energetic status of …