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result(s) for
"Callinectes sapidus"
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The Blue Treasure: Comprehensive Biorefinery of Blue Crab (Callinectes sapidus)
2024
The blue crab, Callinectes sapidus (Rathbun, 1896), has become an invading species in the Mediterranean region, almost completely replacing native species within a few years and causing significant loss to local production. In some areas, there is an urgent need to propose new supply chains based on blue crab exploitation, where the potential valorisation routes for unsaleable blue crab and waste play an important role. The final purpose is to transform a threat into a treasure, towards a more sustainable world. In addition to applications in food industries, the considerable quantity of bioactive compounds in by-products, such as polysaccharides, proteins, amino acids, carotenoids, and chitin, needs to be capitalised by means of efficacious strategies and appropriate management. Crab exoskeleton can also be exploited as a carbonaceous material with applications in several fields, including medicine. Blue crab bioactive molecules have been widely recognised for having antioxidant, anticancer, antidiabetic, anti-inflammatory, and antimicrobial properties. Due to these functional and distinctive activities, such high-value components could be employed in various industries such as food–feed–pharma and cosmetics. Recycling and reusing these underutilised but economically valuable waste or by-products could help to reduce the environmental impacts of the whole supply chain from the perspective of the circular economy.
Journal Article
Coastal Vegetation and Bathymetry Influence Blue Crab Abundance Across Spatial Scales
2022
Blue crabs (Callinectes sapidus) are highly mobile, ecologically-important mesopredators that support multimillion-dollar fisheries along the western Atlantic Ocean. Understanding how blue crabs respond to coastal landscape change is integral to conservation and management, but such insights have been limited to a narrow range of habitats and spatial scales. We examined how local-scale to landscape-scale habitat characteristics and bathymetric features (channels and oceanic inlets) affect the relative abundance (catch per unit effort, CPUE) of adult blue crabs across a > 33 km2 seagrass landscape in coastal Virginia, USA. We found that crab CPUE was 1.7 × higher in sparse (versus dense) seagrass, 2.4 × higher at sites farther from (versus nearer to) salt marshes, and unaffected by proximity to oyster reefs. The probability that a trapped crab was female was 5.1 × higher in sparse seagrass and 8 × higher near deep channels. The probability of a female crab being gravid was 2.8 × higher near seagrass meadow edges and 3.3 × higher near deep channels. Moreover, the likelihood of a gravid female having mature eggs was 16 × greater in sparse seagrass and 32 × greater near oceanic inlets. Overall, we discovered that adult blue crab CPUE is influenced by seagrass, salt marsh, and bathymetric features on scales from meters to kilometers, and that habitat associations depend on sex and reproductive stage. Hence, accelerating changes to coastal geomorphology and vegetation will likely alter the abundance and distribution of adult blue crabs, challenging marine spatial planning and ecosystem-based fisheries management.
Journal Article
RT-qPCR Detection of CsRV1 in Blue Crabs from Delaware Inland Bays and Its Ecological Context Within Local Water Quality Conditions
by
Ozbay, Gulnihal
,
Attarwala, Tahera
,
Parsaeimehr, Ali
in
Alkalinity
,
Aquaculture
,
Artificial reefs
2026
Blue crab (Callinectes sapidus) populations are of substantial ecological and economic importance. As a keystone species, C. sapidus plays a critical role in maintaining estuarine food webs while also supporting one of the most consumed and economically valuable seafood industries in Delaware and Maryland. This study investigated the presence of Callinectes sapidus reovirus 1 (CsRV1) in C. sapidus collected from Rehoboth Bay, Delaware, USA, using reverse transcription–quantitative polymerase chain reaction (RT-qPCR), and evaluated potential associations between viral occurrence and physicochemical parameters, including temperature, salinity, pH, turbidity, alkalinity, calcium hardness, nitrite, and chlorophyll-a. A total of eighteen traps were deployed across six study sites encompassing oyster aquaculture areas, artificial oyster reefs, and control sites with minimal structural habitat. CsRV1 was detected in blue crabs from Rehoboth Bay, confirming the presence of the virus within the Delaware Inland Bays; however, detections were limited to a small subset of sampled individuals. Among the environmental parameters examined, salinity exhibited the greatest interannual variability, while other physicochemical conditions remained relatively consistent across site types and sampling periods. Overall, environmental conditions during the study period were within ranges considered suitable for C. sapidus, indicating that the population is likely to experience limited environmental stress and minimal disease-related impacts under current conditions.
Journal Article
Composition and variation in the diet of the invasive blue crab Callinectes sapidus in Mellah Lagoon (north-eastern Algeria)
by
Derbal Farid
,
Kara Mohamed Hichem
,
Bouhali Khouloud
in
algeria
,
bioinvasions
,
callinectes sapidus
2026
This study examines the dietary composition and variation in the feeding of the invasive blue crab Callinectes sapidus in Mellah Lagoon, a safeguarded coastal habitat in northern Algeria. During a one-year period (February 2021–March 2022), 287 stomachs from adult crabs were examined quantitatively and qualitatively, considering sex, reproductive condition, and season. Yearly average stomach vacuity rate was 37.6%, with substantial seasonal variations and significant differences between ovigerous and non-ovigerous females. Prey items were classified into nine taxonomic groups, with the majority being Arthropods (37.42%), followed by unidentified organic matter (27.46%), mollusks (15.47%), teleost fish (11.49%), and plant material (7.8%). A significant level of trophic similarity was observed between males and females. In contrast, the correlation between ovigerous and non-ovigerous females was positive but not statistically significant. Seasonal comparisons also showed non-significant correlations between winter and autumn and between winter and spring. The estimated trophic level (3.3) supports the classification of C. sapidus as an opportunistic omnivore.
Journal Article
Innate feeding plasticity and animal prey support invasiveness of aquatic species in a southwestern European estuary
by
Engelen, Aschwin
,
Teodosio, Maria
,
Morais, Pedro
in
Callinectes sapidus
,
DNA sequencing
,
Food web
2025
Non-indigenous species often rely on trophic plasticity to adjust to available food sources and even to avoid interspecific competition while overcoming environmental constraints during the establishment phase and, eventually, as they become invasive. The Atlantic blue crab Callinectes sapidus Rathbun, 1896 is expanding quickly in southwestern Europe and northwestern Africa, raising concerns about its impacts. Its feeding ecology in non-native areas is poorly understood, so this study aimed to 1) unveil the diet and feeding strategy used by the Atlantic blue crab in a highly invaded European estuary, 2) evaluate if their invasiveness was facilitated by an invasion meltdown process concerning trophic facilitation, and 3) determine its trophic position. Metagenomic analyses of gut content and stable isotopes showed that the species relied on opportunistic and carnivorous feeding traits and preyed mainly on native animal species, such as fish, shrimps, and oysters. We did not observe evidence of a widespread invasion meltdown process through trophic facilitation mediated by other invaders. The Atlantic blue crab’s trophic niche overlapped with two native crab species, particularly the European green crab Carcinus maenas (Linnaeus, 1758), while it’s high trophic position (4.3±0.5) reflected the reliance on animal prey. These evidence suggests that trophic plasticity likely contributed to the invasiveness of the Atlantic blue crab because of its ability to exploit readily available prey. The Atlantic blue crab metapopulation is expanding and increasing over a vast region, and unfortunately a series of cascading effects throughout the food web can still be expected, as observed elsewhere.
Journal Article
Systematic Investigation of Factors Controlling Supercritical Fluid Extraction (SFE) of Spiked and Aged PCBs from Edible Tissues of the Blue Crab (Callinectes sapidus)
2015
Systematic investigation of factors controlling supercritical fluid extraction (SFE) of spiked and naturally incurred (aged) PCBs from edible tissues of the Blue Crab (
Callinectes sapidus
) was undertaken. Effects of extraction pressure, temperature and time, CO
2
flow rate and total volume, and collection temperature were assessed. Temperature dramatically impacted extraction efficiency, especially at lower pressures. Surprisingly, extraction of both spiked and aged PCBs was flow rate dependent, counter to prevailing views regarding the relative ease of SFE of spiked versus aged contaminants from environmental matrices. PCBs were optimally trapped on a 1:1 mixture of C
18
-modified and porous silica at 0°C and eluted with <2 mL isooctane at 90°C. A combined 10 min static/30 min dynamic extraction at 35.5 MPa and 150°C with a CO
2
flow rate of 3 mL min
−1
yielded maximum (quantitative) recoveries of spiked and aged PCBs. Resulting solvent extracts required no cleanup and could be analyzed directly by halogen-selective GC with MS confirmation.
Journal Article
A global occurrence database of the Atlantic blue crab Callinectes sapidus
by
Zenetos, Argyro
,
Mancinelli, Giorgio
,
Bardelli, Roberta
in
631/158/2178
,
631/158/851
,
631/158/852
2021
The Atlantic blue crab
Callinectes sapidus
is a portunid native to the western Atlantic, from New England to Uruguay. The species was introduced in Europe in 1901 where it has become invasive; additionally, a significant northward expansion has been emphasized in its native range. Here we present a harmonized global compilation of
C. sapidus
occurrences from native and non-native distribution ranges derived from online databases (GBIF, BISON, OBIS, and iNaturalist) as well as from unpublished and published sources. The dataset consists of 40,388 geo-referenced occurrences, 39,824 from native and 564 from non-native ranges, recorded in 53 countries. The implementation of quality controls imposed a severe reduction, in particular from online databases, of the records selected for inclusion in the dataset. In addition, a technical validation procedure was used to flag entries showing identical coordinates but different year of record, in-land occurrences and those located close to the coast. Similarly, a flagging system identified entries outside the known distribution of the species, or associated with unsuccessful introductions.
Measurement(s)
geographic location
Technology Type(s)
digital curation
Factor Type(s)
location • year of record
Sample Characteristic - Organism
Callinectes sapidus
Sample Characteristic - Environment
marine biome
Sample Characteristic - Location
Globe
Machine-accessible metadata file describing the reported data:
https://doi.org/10.6084/m9.figshare.14077112
Journal Article
Environmental drivers of size-based population structure, sexual maturity and fecundity: A study of the invasive blue crab Callinectes sapidus (Rathbun, 1896) in the Mediterranean Sea
by
Sarà, Gianluca
,
Gjoni, Vojsava
,
Marchessaux, Guillaume
in
Animals
,
Biological activity
,
Biological effects
2023
The blue crab Callinectes sapidus (Rathbun, 1896) is one of the most invasive species in the Mediterranean Sea. Understand how the populations are maintained and how the environment is driving the populations in the areas invaded is the key to an effective future management. This current study is presenting a monthly long-term monitoring of the blue crabs’ population structure, body size, sexual maturity, reproduction periods and fecundity, and their relationships with environmental factors in a saltmarshes system in Italy. During winter, high densities (15 ± 8 ind m -2 ) of early juveniles (< 2 cm) were observed, and their numbers decreased due the population growth until summer. The size-spectra showed that across different temperature (18–26°C) and salinity (24–40 psu) gradients, the growth period for males is faster than for females. Based on abdominal analysis, sexual maturity was defined at ∼12 cm for males and females but the population was in favor of males that were more than 66% of the time mature throughout the year. Copulations periods were identified between spring and autumn when more than 50% of females were matures, and ovigerous females’ migrations were observed in late summer. Our study expand our understanding of how the environment interacts to effect physiological and biological processes of alien species and improve our ability to make predictions of how environmental change the distribution of the alien species in the future. Based on our results, we also discuss which population control strategy would be most effective based on the data available in the literature.
Journal Article
Using delta super(13)C and delta super(15)N to determine the migratory history of offshore Louisiana blue crab spawning stocks
2013
During offshore sampling conducted between 2005 and 2007, we discovered large concentrations of the blue crab Callinectes sapidus spawning between 4 and 50 km offshore of the Louisiana coast; the greatest concentrations were found on high-relief sandy shoals. We used natural abundance carbon and nitrogen isotopes to evaluate C. sapidus migratory source locations within south-central Louisiana estuarine systems as well as residency on the shoals. There was an east-west trend of decreasing delta super(13)C and increasing delta super(15)N for offshore crab tissue (muscle and ovary) related to proximity to the Atchafalaya River. This indicates that crabs predominately migrate directly offshore from their home estuary rather than migrating long distances alongshore. The findings provide evidence of a direct link between the inshore fishery and female blue crabs captured offshore in unique sandy shoal habitats, which likely support at least 20% of the known Louisiana blue crab spawning stock west of the Mississippi River.
Journal Article
Oyster Reefs as Natural Breakwaters Mitigate Shoreline Loss and Facilitate Fisheries
2011
Shorelines at the interface of marine, estuarine and terrestrial biomes are among the most degraded and threatened habitats in the coastal zone because of their sensitivity to sea level rise, storms and increased human utilization. Previous efforts to protect shorelines have largely involved constructing bulkheads and seawalls which can detrimentally affect nearshore habitats. Recently, efforts have shifted towards \"living shoreline\" approaches that include biogenic breakwater reefs. Our study experimentally tested the efficacy of breakwater reefs constructed of oyster shell for protecting eroding coastal shorelines and their effect on nearshore fish and shellfish communities. Along two different stretches of eroding shoreline, we created replicated pairs of subtidal breakwater reefs and established unaltered reference areas as controls. At both sites we measured shoreline and bathymetric change and quantified oyster recruitment, fish and mobile macro-invertebrate abundances. Breakwater reef treatments mitigated shoreline retreat by more than 40% at one site, but overall vegetation retreat and erosion rates were high across all treatments and at both sites. Oyster settlement and subsequent survival were observed at both sites, with mean adult densities reaching more than eighty oysters m(-2) at one site. We found the corridor between intertidal marsh and oyster reef breakwaters supported higher abundances and different communities of fishes than control plots without oyster reef habitat. Among the fishes and mobile invertebrates that appeared to be strongly enhanced were several economically-important species. Blue crabs (Callinectes sapidus) were the most clearly enhanced (+297%) by the presence of breakwater reefs, while red drum (Sciaenops ocellatus) (+108%), spotted seatrout (Cynoscion nebulosus) (+88%) and flounder (Paralichthys sp.) (+79%) also benefited. Although the vertical relief of the breakwater reefs was reduced over the course of our study and this compromised the shoreline protection capacity, the observed habitat value demonstrates ecological justification for future, more robust shoreline protection projects.
Journal Article