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Studies on functional response and prey selection using zooplankton in the anostracan Chirocephalus diaphanus Prevost, 1803
Authors:Sarma  S S S  Nandini  S
Institution:(1) Laboratory of Aquatic Zoology (UMF), Division of Research and Postgraduate Studies, National Autonomous University of Mexico, Campus Iztacala, Av. de los Barrios s/n, Los Reyes, AP 314, CP 54090 Tlalnepantla, State of Mexico, Mexico;(2) CyMA Project-Aquatic Ecology, Division of Research and Postgraduate Studies, National Autonomous University of Mexico, Campus Iztacala, Tlalnepantla, State of Mexico, Mexico
Abstract:Freshwater cladocerans and rotifers were used as prey to study functional response and prey selection by adult females of Chirocephalus diaphanus under laboratory conditions. For functional response studies, we offered three rotifer species (Brachionus calyciflorus, B. patulus and Euchlanis dilatata) and three cladoceran species (Alona rectangula, Ceriodaphnia dubia and Moina macrocopa) at various densities ranging from 0.5 to 16 ind. ml–1. We found increased zooplankton consumption with increasing prey density but beyond 4 ind ml–1 cladocerans and 8 ind. ml–1 rotifers, the number of animals eaten plateaued. In general, C. diaphanus consumed fewer large prey (cladocerans) and many more smaller zooplankton (rotifers). For prey selection experiments, we used B. calyciflrous, B. patulus, C. dubia and M. macrocopa, offered at the ratio of two rotifers: one cladoceran and at three prey densities (total zooplankton numbers: 3, 6 and 12 ind. ml–1). Prey selectivity patterns followed the functional response trends. In general, regardless of prey types, with an increase in the available zooplankton, there was an increase in the number of prey consumed. At any given prey density, C. diaphanus consumed higher numbers of rotifers than cladocerans. Among the prey offered, B. patulus and M. macrocopa were positively selected. Results are discussed in light of possible control of zooplankton by anostracans in temporary ponds.
Keywords:functional response  zooplankton  Anostraca  prey selectivity  predation
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