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Fish diet composition in floodplain lagoons of an Australian dryland river in relation to an extended dry period following flooding
Author(s) -
Elvio Sérgio Figueredo Medeiros,
Angela H. Arthington
Publication year - 2013
Publication title -
environmental biology of fishes
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.652
H-Index - 86
eISSN - 1573-5133
pISSN - 0378-1909
DOI - 10.1007/s10641-013-0180-0
Subject(s) - floodplain , ecology , carnivore , flooding (psychology) , trophic level , foraging , threatened species , geography , predation , habitat , biology , environmental science , fishery , psychotherapist , psychology
Floodplain rivers worldwide are threatened by loss of connectivity to their floodplains and hence reduced benefits from floodplain energy subsidies. Dryland rivers with 'boom and bust' ecological responses to flooding and extended dry periods may be particularly vulnerable. This paper describes variations in dietary composition of three fish species of contrasting trophic position in dryland floodplain lagoons with variable flood inundation and drying histories. The study species were Ambassis agassizii - a microphagic carnivore, Leiopotherapon unicolor - a carnivore/omnivore, and Nematalosa erebi - an algivore/detritivor. Despite the range of food items recorded in fish guts, each species fed mostly on relatively few food categories and few food items within each category. Most of the spatial (i.e. among lagoons) and temporal dietary variation was associated with different proportional contributions of these food items. Given the absence or low magnitude of flooding during the study period, temporal changes in diets of the three species are probably the result of successional changes in composition of invertebrate prey as the dry season progressed. The focus of each fish species on relatively few food categories and a few reliable food items within each category may be the most profitable foraging strategy when food resources are limiting in progressively drying floodplain lagoons.Griffith Sciences, Griffith School of EnvironmentFull Tex

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