Diet spectrum and preference of the invasive round goby (Neogobius melanostomus) in Flanders (North Belgium)

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Diet spectrum and preference of the invasive round goby (Neogobius melanostomus) in Flanders (North Belgium) Hugo Verreycken, Jasper Van den Abeele, Luc De Bruyn

Outline Introduction Round goby in Flanders Material and methods Fish and invertebrates sampling Stomach analysis Results Index of Relative Importance Gut content vs prey availability Food preference experiment Conclusions

Round goby: current distribution

Material & Methods 4 sampling sites Large tidal river Scheldt Gravel pit Kessenich Two shipping canals Albertcanal and Moervaart Fish sampling with electrofishing gear, fyke nets and angling (INBO) Invertebrates sampling with dipnet and artificial substrates (VMM) Stomach content analysis and food preference

Introduction

Introduction

Introduction

M&M: stomach analysis Stomach and gut dissected Stomach content weighed (0.0001 g) Different food types identified to family or genus level Method described by Hyslop (1980) Relative biomass (%Bi), relative number (%Ni) & frequency of occurrence (%F) was determined for each food item. Index of relative importance (IRI): IRI = (%Ni + %Bi) %F M&M: food preference experiment Acclimation one week in aquarium (food = dried Chironomid larvae) (hard shelled) Dreissenidae versus (soft) Gammaridae 15 specimens of each, offered simultaneously Experiment = 1 hour

Results: stomach content vs. prey availability 249 male and 143 females (77 stomachs empty) Water Season Total length (cm) (n) (n) n Empty Range Mean SD stomach Albertcanal Spring 4.7-16.2 8.7 2.8 84 37 121 11 Summer 7.2-16.2 11.1 2.5 19 20 39 9 Autumn 5.5-9.8 7.2 1.2 24 6 30 30 Total: 127 63 190 50 Sea Scheldt Spring 4.8-17.7 9.3 2.6 37 20 57 4 Summer 4.8-15.8 8.9 2.4 44 34 78 17 Total: 81 54 135 21 Kessenich Gravel Pit Moervaart canal Summer 5.2-9.3 7.4 1.4 9 3 12 5 Autumn 4.7-13.7 8.9 1.8 32 23 55 1

222 14 13 Results: IRI Albertcanal 798 Dreissenidae Chironomidae Gammaridae B. tentaculata Sphaeriidae 9150 12

Results: IRI Kessnich gravel pit 2776 3241 Gammaridae Chironomidae Dreissenidae 2948 13

72 Results: IRI Moervaart 879 718 3611 Chironomidae Sphaeriidae 1707 B. tentaculata Dreissenidae Asellidae Gammaridae 2815 14

Results: IRI Sea Scheldt 520 248 142 405 Caridea Gammaridae Mysidae Idoteidae B. tentaculata 5381 15

content availability(bbi) Prey availability vs stomach content 16

Summary results: availability vs. content Stomach content differs strongly among sites. Proportion of molluscs differs: higher when more mollusc are available, but not absolute => difference in catchability of other prey? => Round goby is food generalist which seems to adapt to the available local prey items and thus is very flexible in its diet.

Results: stomach content Larger (older) fish: significantly more Dreissenidae (less Gammaridae and Chironomidae)(Albertcanal) and Caridea (Sea Scheldt) Relatively large differences between sexes and seasons Index of Relative Importance Sea Scheldt - depending on sex and season 18

Results: food choice experiment 19 All fish significantly take more Gammarids (almost no Dreissenids)

Conclusions Round goby mainly feed on benthic invertebrates. It is a food generalist which can adapt to the available local prey items. Nevertheless, stomach content does not fully reflects prey availability. Diet content differs among fish sizes (age) and season within a site. When offered a choice between a tough prey (Dreissenidae are hard shelled and difficult to handle) and an easy prey (Gammaridae are soft bodied), all fish clearly prefer the latter. Due to their flexible nutrition regimen and wide diet spectrum, round goby can easily adapt to new environments. Their feeding behaviour together with other adaptive "life-history traits" (multiple spawner, brood care,...) make the round goby a good colonizer and invasive species.

Acknowledgements The Flemish Environmental Agency (VMM) for providing the data on invertebrate availability The Groenendaal fishing team (INBO) and several anglers for fieldwork support Paul Jacobs showed us the perfect site to collect Gammaridae and Dreissenidae for the aquarium experiment. THANK YOU!