bioRxiv · 10.1101/2022.10.02.510507
Molecular insights into the Darwin paradox of coral reefs from the sea anemone Aiptasia
Abstract
Symbiotic cnidarians such as corals and anemones form highly productive and biodiverse coral-reef ecosystems in nutrient-poor ocean environments, a phenomenon known as Darwins Paradox. Resolving this paradox requires elucidating the molecular bases of efficient nutrient distribution and recycling in the cnidarian-dinoflagellate symbiosis. Using the sea anemone Aiptasia, we show that during symbiosis, the increased availability of glucose and the presence of the algae jointly induce the coordinated upregulation and re-localization of glucose and ammonium transporters. These molecular responses are critical to support symbiont functioning and organism-wide nitrogen assimilation through GS/GOGAT-mediated amino-acid biosynthesis. Our results reveal crucial aspects of the molecular mechanisms underlying nitrogen conservation and recycling in these organisms that allow them to thrive in the nitrogen-poor ocean environments. One-sentence summaryWhole-organism nitrogen assimilation fueled by glucose from symbiotic algae enables corals to flourish in oligotrophic waters.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Cui, G., Konciute, M. K., Ling, L., Esau, L., Raina, J.-B., Han, B., Salazar, O. R., Presnell, J. S., Radecker, N., Zhong, H., Menzies, J., Cleves, P. A., Liew, Y. J., Krediet, C. J., Sawiccy, V., Cziesielski, M. J., Guagliardo, P., Bougoure, J., Pernice, M., Hirt, H., Voolstra, C. R., Weis, V. M., Pringle, J. R., Aranda, M.. 2022-10-03. Molecular insights into the Darwin paradox of coral reefs from the sea anemone Aiptasia. https://doi.org/10.1101/2022.10.02.510507
Cite the original work for its findings. Save a collection to share your selection of sources.