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High Temperature and Crab Density Reduce Atmospheric Nitrogen Fixation in Red Sea Mangrove Sediments (2019)
Journal Article
Qashqari, M. S., Garcias-Bonet, N., Fusi, M., Booth, J. M., Daffonchio, D., & Duarte, C. M. (2020). High Temperature and Crab Density Reduce Atmospheric Nitrogen Fixation in Red Sea Mangrove Sediments. Estuarine, Coastal and Shelf Science, 232, Article 106487. https://doi.org/10.1016/j.ecss.2019.106487

Mangrove ecosystems are highly productive and provide important ecosystem services. However, in the Red Sea mangroves are under severe nutrient-limiting conditions, reflected in dwarf plants. The nutrient limitation is especially acute for iron, as v... Read More about High Temperature and Crab Density Reduce Atmospheric Nitrogen Fixation in Red Sea Mangrove Sediments.

Oxygen supersaturation protects coastal marine fauna from ocean warming (2019)
Journal Article
Giomi, F., Barausse, A., Duarte, C. M., Booth, J., Agusti, S., Saderne, V., Anton, A., Daffonchio, D., & Fusi, M. (2019). Oxygen supersaturation protects coastal marine fauna from ocean warming. Science Advances, 5(9), Article eaax1814. https://doi.org/10.1126/sciadv.aax1814

Ocean warming affects the life history and fitness of marine organisms by, among others, increasing animal metabolism and reducing oxygen availability. In coastal habitats, animals live in close association with photosynthetic organisms whose oxygen... Read More about Oxygen supersaturation protects coastal marine fauna from ocean warming.

Environmental latitudinal gradients and host specificity shape Symbiodiniaceae distribution in Red Sea Porites corals (2019)
Journal Article
Terraneo, T. I., Fusi, M., Hume, B. C., Arrigoni, R., Voolstra, C. R., Benzoni, F., Forsman, Z. H., & Berumen, M. L. (2019). Environmental latitudinal gradients and host specificity shape Symbiodiniaceae distribution in Red Sea Porites corals. Journal of Biogeography, 46(10), 2323-2335. https://doi.org/10.1111/jbi.13672

Aim
To assess the diversity of algal symbionts of the family Symbiodiniaceae associated with the coral genus Porites in the Red Sea, and to test for host-specificity and environmental variables driving biogeographical patterns of algal symbiont dist... Read More about Environmental latitudinal gradients and host specificity shape Symbiodiniaceae distribution in Red Sea Porites corals.