Trophic niche of the invasive gregarious species Crepidula fornicata, in relation to ontogenic changes
Androuin, T.; Dubois, S. F.; Hubas, C.; Lefebvre, G.; Le Grand, F.; Schaal, G.; Carlier, A.
Show abstract
AO_SCPLOWBSTRACTC_SCPLOWThe slipper limpet Crepidula fornicata is a common and widespread invasive gregarious species along the European coast. Among its life-history traits, well documented ontogenic changes in behavior (i.e., motile male to sessile female) suggests a potential shift in feeding strategy across its life stages. Considering the ecological significance of this species in colonized areas, understanding how conspecifics share the trophic resource is crucial. Using fatty acids (FA) and stable isotopes (SI) as complementary trophic markers, we conducted a field survey between late winter and spring to investigate the trophic niche of three ontogenic stages of C. fornicata that bear different sexual (male/female) and motility (motile/sessile) traits. Potential trophic sources were characterized by their pigment, FA and SI compositions and discriminated well over the study period. We showed that the biofilm covering C. fornicata shells harbored a higher biomass of primary producers (i.e., chlorophytes and diatoms) than the surrounding sediment surface. Over the study period, we observed a covariation between the three ontogenic stages for both FA and SI compositions which suggest that the trophic niche of C. fornicata does not change significantly across its benthic life. During periods of low food availability, slipper limpets displayed an opportunistic suspension-feeding behaviour, relying on both fresh and detrital organic matter, likely coming from superficial sedimentary organic matter. During high food availability (i.e., spring phytoplankton bloom), all ontogenic stages largely benefited from this fresh supply of organic matter (pelagic diatoms in this case). However, the three ontogenic stages showed consistent differences in FA composition, and to a lesser extent in SI composition. These differences persist over time, as they originate more likely from ontogenic physiological changes (e.g., differential growth rates, metabolic rate or gametogenesis) rather than diet discrepancies.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Trophic ecology of deep-sea megafauna in the ultra-oligotrophic Southeastern Mediterranean Sea 96%
- Stable isotope insights into artificial reef effects of floating offshore energy structures in Norwegian North Sea codfishes 95%
- Effect of different derivatization protocols on the calculation of trophic position using amino acids compound-specific stable isotopes 95%
Similar papers in this journal
- Functional diversity of microboring Ostreobium algae isolated from corals 95%
- High-temporal resolution of microbial food web dynamics and structure during phytoplankton blooms in the Baltic Sea 95%
- Seasonal dynamics of a glycan-degrading flavobacterial genus in a tidally-mixed coastal temperate habitat 95%
Similar papers in this journal
- Size-dependent susceptibility of lake phytoplankton to light stress: An implication for succession of large green algae in a deep oligotrophic lake 95%
- Polychaete capture by native jellyfish and invasive ctenophore reveals a novel benthic pelagic trophic link 94%
- Freshwater dissolved oxygen dynamics: changes due to glyphosate, 2,4-D and their mixture, both under clear and turbid-organic conditions. 94%
Similar papers in this journal
- Hot spots drive uptake and short-term processing of organic and inorganic carbon and nitrogen in intertidal sediments 95%
- Microplastics may reduce the efficiency of the biological carbon pump by decreasing the settling velocity and carbon content of marine snow 95%
- Variability in the phytoplankton response to upwelling across an iron limitation mosaic within the California Current System 95%
Similar papers in this journal
- Compound specific stable isotope analysis of amino acid nitrogen reveals detrital support of microphytobenthos in the Dutch Wadden Sea benthic food web 96%
- Assessment of microphytobenthos communities in the Kinzigcatchment using photosynthesis-related traits, digital light microscopy and 18S-V9 amplicon sequencing 94%
- Surface microbiota of Mediterranean loggerhead sea turtles unravelled by 16S and 18S amplicon sequencing 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.