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Marchessaux, G.

Publications and source records attributed to Marchessaux, G..

2 recordsLinked to original sources

Thermal constraints shape metabolic scaling and distribution of the tufted ghost crab (Ocypode cursor) in the Mediterranean Sea

The Mediterranean Sea is undergoing significant environmental changes due to climate change and the introduction of non-native species, impacting biodiversity and ecosystem dynamics. Ocypode cursor (tufted ghost crab) has expanded its range, likely in response to changing thermal conditions.This study investigates the metabolic scaling of O. cursor across three active months (July, August, and September) under air- and water-breathing conditions during both daytime and nighttime. The results revealed seasonal variation in metabolic scaling, with significant differences in intercept values and scaling slopes among months. During daytime air-breathing conditions, metabolic rates increased in August and September regardless of body size, while at night in August, larger crabs exhibited higher metabolic rates. Under water-breathing conditions, smaller crabs showed greater metabolic responses in August during the day, whereas nighttime activity remained stable across months. These results indicate that temperature, diel cycle, and respiratory mode shape metabolic scaling as a comparative indicator of thermal performance rather than a direct proxy for fitness. Understanding these responses provides insight into O. cursors ecological flexibility and contributes to assessing ectotherm responses to ongoing Mediterranean warming.

ecology↗

Movements and habitat use of the invasive blue crab Callinectes sapidus in a Mediterranean coastal lagoon

The Atlantic blue crab (Callinectes sapidus), an invasive and ecologically impactful decapod species, has rapidly proliferated across the Mediterranean Sea, prompting concerns over its effects on native ecosystems and local economies. Despite its growing presence, knowledge of its behavioural ecology in Mediterranean coastal systems remains limited. This study presents the first acoustic telemetry-based assessment of C. sapidus within its invasive range, focusing on movement patterns, activity levels, and habitat preferences in Biguglia Lagoon, Corsica (Northwestern Mediterranean). In 2023, 31 adult crabs (20 males, 11 females) were tagged and tracked over four months. Accelerometer data revealed distinct diel activity patterns, with females exhibiting significantly higher walking and swimming behaviours, while males were more sedentary, particularly at night. Salinity preferences varied by sex: females occupied higher-salinity zones, likely linked to reproductive behaviour, while males favoured lower salinity areas. Females also travelled greater distances and had larger, more variable home ranges, with some individuals extending into adjacent marine environments. Although no berried females were tagged, detections at sea suggest early seaward migrations by non-ovigerous and potentially ovigerous females. These findings underscore the species behavioural plasticity and sex-specific ecological strategies. The integration of telemetry and environmental data offers critical insights into the spatial ecology of C. sapidus, informing targeted management strategies. This research directly supported Corsicas first Territorial Control Plan for marine invasive species and provides a framework for adaptive management across other Mediterranean regions facing similar ecological challenges. HighlightsO_LIFirst telemetry study of blue crab in Mediterranean invasive range C_LIO_LIFemales showed higher activity and larger home ranges than males C_LIO_LICrabs displayed sex-specific salinity and depth preferences C_LIO_LISome females migrated to sea, suggesting early reproductive movement C_LIO_LIFindings informed Corsicas first invasive species control plan C_LI

ecology↗