Macrophyte architecture affects the abundance and diversity of littoral microfauna

Paloma Lucena-Moya1, Ian C. Duggan2
1University of Vigo
2Department of Biological Sciences, Centre for Biodiversity and Ecology Research, The University of Waikato, Hamilton, New Zealand

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Chapman MA, Lewis MH (1976) An introduction to the freshwater Crustacea of New Zealand. William Collins (New Zealand) Ltd, Auckland

Cheruvelil KS, Soranno PA, Serbin RD (2000) Macroinvertebrabes associated with submerged macrophytes: sample size and power to detect effects. Hydrobiologia 441:133–139

Cyr H, Downing JA (1988) The abundance of phytophilous invertebrates on different species of submerged macrophytes. Freshwater Biol 20:365–374

Declerck SD, Anderstukken MV, Als AP, Uylaert KM (2007) Plankton biodiversity along a gradient of productivity and its mediation by macrophytes. Ecology 88:2199–2210

Dudley TL (1988) The roles of plant complexity and epiphyton in colonization of macrophytes by stream insects. Verh Internat Verein Theor Angew Limnol 23:1153–1158

Duggan IC (2001) The ecology of periphytic rotifers. Hydrobiologia 446(447):139–148

Duggan IC, Green JD, Thompson K, Shiel RJ (1998) Rotifers in relation to littoral ecotone structure in Lake Rotomanuka, North Island, New Zealand. Hydrobiologia 387(388):179–197

Duggan IC, Green JD, Thompson K, Shiel RJ (2001) The influence of macrophytes on the spatial distribution of littoral rotifers. Freshwater Biol 46:777–786

Gerrish N, Bristow JM (1979) Macroinvertebrate associations with aquatic macrophytes and artificial substrates. J Great Lakes Res 5:69–72

Gotelli NJ, Colwell RK (2001) Quantifying biodiversity: procedures and pitfalls in the measurement and comparison of species richness. Ecol Lett 4:379–391

Grimshaw HJ, Wetzel RG, Brandenburg M, Segerblom K, Wenkert LJ, Marsh GA, Charnetzky W, Haky JE, Carraher C (1997) Shading of periphyton communities by wetland emergent macrophytes: decoupling of algal photosynthesis from microbial nutrient retention. Arch Hydrobiol 139:17–27

Hansen JP, Sagerman J, Wikstrom SA (2010) Effects of plant morphology on small-scale distribution of invertebrates. Mar Biol 157:2143–2155

Hicks BJ, Bryant N (2002) Management of the University of Waikato campus lakes: final report. CBER contract report 23, Centre for Biodiversity and Ecology Research, Department of Biological Sciences, School of Science and Technology, The University of Waikato, Hamilton, New Zealand

Jeffries M (1993) Invertebrate colonisation of artificial pondweeds of differing fractal dimension. Oikos 67:142–148

Jones JI, Young JO, Haynes GM, Moss B, Eaton JW, Hardwick KJ (1999) Do submerged aquatic plants influence their periphyton to enhance the growth and reproduction of invertebrate mutualists? Oecologia 120:463–474

Koste W (1978) Rotatoria. Die Radertiere Mitteleuropas, vol 2. Gebrüder Borntraeger, Stuttgart

Kuczyńska-Kippen N (2006) Zooplankton structure in architecturally differentiated macrophyte habitats of shallow lakes in the Wielkopolska Region, Poland. Oceanol Hydrobiol Stud 35:179–191

Kuczyńska-Kippen N (2008) Spatio-temporal segregation of cladocerans within a Chara hispida bed. J Freshwat Ecol 24:533–539

Kuczyńska-Kippen N, Milecka E (2009) The diurnal distribution of the zooplankton community of the littoral zone of Lake Wielkowiejskie (Wielkopolski National Park, Poland). Oceanol Hydrobiol Stud 38:91–98

Kuczyńska-Kippen N, Nagengast B (2003) The impact of the architecture of macrophytes on the spatial structure of zooplankton. Roczniki Akademii Rolniczej w Poznaniu 154:121–129

McAbendroth L, Foggo A, Rundle SD, Bilton DT (2005) Unravelling nestedness and spatial pattern in pond assemblages. J Anim Ecol 74:41–49

McCormick PV, Pratt JR, Jenkins DG, Cairns J Jr (1988) A comparison of protozoan, algal, and metazoan colonization of artificial substrates of differing size. Trans Am Microsc Soc 107:259–268

Parsons TR, Marita Y, Lalli CM (1984) A manual of chemical and biological methods for sea water analysis. Pergamon Press, Oxford

Pejler B (1962) On the taxonomy and ecology of benthic and periphytic Rotatoria. Investigations in northern Swedish Lapland. Zoologiska Bidrag Från Uppsala 33:327–422

Pontin RM, Shiel RJ (1995) Periphytic rotifer communities of an Australian seasonal floodplain pool. Hydrobiologia 313(314):63–67

Preissler K (1980) Field experiments on the optical orientation of pelagic rotifers. Hydrobiologia 73:199–203

Rooke JB (1984) The invertebrate fauna of four macrophytes in a lotic system. Freshwater Biol 14:507–513

Rooke JB (1986) Macroinvertebrates associated with macrophytes and plastic imitations in the Eramosa River, Ontario, Canada. Arch Hydrobiol 106:307–325

Schriver P, Bogestrand J, Jeppensen E, Sondergaard M (1995) Impact of submerged macrophytes on fish-zooplankton-phytoplankton interactions: large-scale enclosure experiments in a shallow eutrophic lake. Freshwater Biol 33:255–270

Shiel RJ (1995) A guide to the identification of rotifers, cladocerans and copepods from Australian inland waters. Co-operative Research Centre for Freshwater Ecology, Murray-Darling Freshwater Research Centre. Albury, New South Wales

Taniguchi H, Takano S, Tokeshi M (2003) Influences of habitat complexity on the diversity and abundance of epiphytic invertebrates on plants. Freshwater Biol 48:718–728

Tessier C, Cattaneo A, Pinel-Alloul B, Galanti G (2004) Biomass, composition and size structure of invertebrate communities associated to different types of aquatic vegetation during summer in Lago di Canada (Italy). J Limnol 63:190–198

Thomaz SM, Dibble ED, Evangelista LR, Higuti J, Bini LM (2008) Influence of aquatic macrophyte habitat complexity on invertebrate abundance and richness in tropical lagoons. Freshwater Biol 53:358–367

van Donk E, van de Bund WJ (2002) Impact of submerged macrophytes including charophytes on phyto- and zooplankton communities: allelopathy versus other mechanisms. Aquat Bot 72:261–274

Vieira LCG, Bini LM, Velho LFM, Mazao GR (2007) Influence of spatial complexity on the density and diversity of periphytic rotifers, microcrustaceans and testate amoebae. Fund Appl Limnol 179:77–85

Wallace RL, Edmondson WT (1986) Mechanism and adaptive significance of substrate selection by a sessile rotifer. Ecology 67:314–323

Walsh EJ (1995) Habitat-specific predation susceptibilities of a littoral rotifer to two invertebrate predators. Hydrobiologia 313(314):205–211

Willis K (1996) The University of Waikato Campus Lakes. Water quality status monitoring December 1995 to May 1996. University of Waikato technical report, p 20