6533b85efe1ef96bd12bff35

RESEARCH PRODUCT

Changes in behavioural response of Mediterranean Seabass (Dicenthratus labrax L.) under different feeding distributions

Angelo OlivieriDaniela CampobelloGianfranco MartinoGianluca Sarà

subject

Mediterranean climatebiology040301 veterinary sciencesEcologyCaptivity Dicentrarchus labrax Behaviour Welfare Mediterranean Sea0402 animal and dairy scienceZoologyCaptivityAquatic animal04 agricultural and veterinary sciencesCaptivity Dicentrarchus labrax Behaviour Welfare Mediterranean Sea.biology.organism_classification040201 dairy & animal science0403 veterinary scienceWater columnSwimming behaviourAgonistic behaviourAnimal Science and ZoologyDicentrarchuslcsh:Animal cultureMorninglcsh:SF1-1100

description

Captive-induced behavioural deviations may involve many aspects of fish behaviour such as swimming activity and enhancement of individual aggressiveness. We studied seabass (Dicentrarchus labrax) behaviour as a function of manual and automatic feeding distribution modes. Under manual mode, the food is distributed over an extended area for a longer period, and its precise location is not always predictable, while with pneumatic automatic feeders, fish receive the same amount of resource, which is concentrated in the same surface area over a shorter period. We compared seabass behaviour under automatic and manual conditions collecting video image recordings before, during, and after feeding distribution, in the morning and in afternoon, on two different days, and analysing data within independent sessions of measurements. Feeding modes significantly affected swimming behaviour: automatically- fed fish were characterised by vertical movements through the water column (towards the surface and bottom) and by horizontal swimming. Manually-fed fish were instead characterised by sharp direction changes during their swimming, mostly towards the surface. Feeding distribution induced changes in collision frequency and elicited aggressive behaviour. In particular, agonistic behaviour (i.e. a fish attacks another fish) was almost exclusively recorded during the feeding under automatic distribution, whereas it was constantly expressed during all the distribution phases under manual mode

10.4081/ijas.2010.e23http://hdl.handle.net/10447/65205