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Biogeographic Patterns and Drivers of Endolithic Symbiosis in Mussels Across Atlantic Europe and North AfricaNARA Subscribed
Aim Ecological interactions are central to ecosystem health. In intertidal habitats, mussels serve as foundational bioengineers. Microbial endoliths erode mussel shells and impair fitness but may also provide thermal benefits under stress. This relationship can be context‐dependent, shifting from parasitism to mutualism. Yet, environmental drivers and large‐scale patterns of this symbiosis remain poorly understood. We aim to i...
Loggerhead sea turtles ( Caretta caretta ) use both oceanic and neritic habitats depending on their life stage, eventually undertaking an ontogenetic shift. Juveniles likely start foraging in a purely opportunistic manner and later seek resources more actively. In the Indian Ocean, it is still unclear where oceanic-stage individuals go, what they do, and importantly where they forage. Yet, such information is crucial to protec...
Environmental policies, including the European Marine Strategy Framework Directive (MSFD), generally rely on the measurement of indicators to assess the good environmental status (GES) and ensure the protection of marine ecosystems. However, depending on available scientific knowledge and monitoring programs in place, quantitative GES assessments are not always feasible. This is specifically the case for marine turtle species,...
Aim Biogeographic boundaries can act as either weak or strong barriers to the spread of species undergoing distributional change. Once a novel species spreads across a boundary, it can have a substantial impact on the ecosystem, for instance by competing with local species, and, over the long‐term, re‐engineer the ecosystem. Marine biogeographic regions are clearly defined on the coast of southern Africa and we tested the infl...
Foul‐weather friends: Modelling thermal stress mitigation by symbiotic endolithic microbes in a changing environmentNARA Subscribed
Temperature extremes are predicted to intensify with climate change. These extremes are rapidly emerging as a powerful driver of species distributional changes with the capacity to disrupt the functioning and provision of services of entire ecosystems, particularly when they challenge ecosystem engineers. The subsequent search for a robust framework to forecast the consequences of these changes mostly ignores within‐species va...
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