Background: Scavenger guilds are composed of a variety of species, co-existing in the same habitat and sharing the same niche in the food web. Niche partitioning among them can manifest in different feeding strategies, e.g. during carcass feeding. In the bentho-pelagic realm of the Southern Ocean, scavenging amphipods (Lysianassoidea) are ubiquitous and occupy a central role in decomposition processes. Here we address the question whether scavenging lysianassoid amphipods employ different feeding strategies during carcass feeding, and whether synergistic feeding activities may influence carcass decomposition. To this end, we compared the relatively large species with the small species and during fish carcass feeding ( spp.). The experimental approach combined ex situ feeding experiments, behavioural observations, and scanning electron microscopic analyses of mandibles. Furthermore, we aimed to detect ecological drivers for distribution patterns of scavenging amphipods in the Antarctic coastal ecosystems of Potter Cove. In Potter Cove, the climate-driven rapid retreat of the Fourcade Glacier is causing various environmental changes including the provision of new marine habitats to colonise. While in the newly ice-free areas fish are rare, macroalgae have already colonised hard substrates. Assuming that a temporal dietary switch may increase the colonisation success of the most abundant lysianassoids and , we aimed to determine their consumption rates (g food x g amphipods x day) and preferences of macroalgae and fish.

Results: We detected two functional groups with different feeding strategies among scavenging amphipods during carcass feeding: carcass 'opener' and 'squeezer'. Synergistic effects between these groups were not statistically verified under the conditions tested. switched its diet when fish was not available by consuming macroalgae (about 0.2 day) but preferred fish by feeding up to 80% of its own mass daily. Contrary, rejected macroalgae entirely and consumed fish with a maximal rate of 0.8 day.

Conclusion: This study reveals functional groups in scavenging shallow-water amphipods and provides new information on coastal intraguild niche partitioning. We conclude that the dietary flexibility of is a potential ecological driver and central to its success in the colonisation of newly available ice-free Antarctic coastal habitats.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5745984PMC
http://dx.doi.org/10.1186/s12983-017-0248-3DOI Listing

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