Dormant propagule banks integrate spatio-temporal heterogeneity in cladoceran communities
- 17 September 2004
- journal article
- research article
- Published by Springer Nature in Oecologia
- Vol. 142 (1) , 109-116
- https://doi.org/10.1007/s00442-004-1711-3
Abstract
The dynamics of populations of short-lived organisms are very patchy, both in space and time. The production of dormant propagules, however, results in an effective increase in generation time. We hypothesize that prolonged dormancy, together with variable regeneration niches, result in integration of temporal variability in community structure. In addition, in aquatic habitats, mechanisms such as sediment focussing can contribute to the integration of spatial variability. We tested the hypothesis that dormant propagule banks integrate spatial and temporal variation in active zooplankton communities. This was done by comparing cladoceran species richness and the community structure of hatchling assemblages retrieved from propagule bank samples collected on a single occasion with assemblages encountered in active community samples covering spatial variation (littoral and pelagic zone), diel (day and night), intra-year (May–October) and inter-year variation (1996–2000). The egg bank community structure differed significantly from the active community structure, but the dissimilarity decreased as spatial and temporal variation was better covered by the active community samples. Furthermore, the identification of all fully grown hatchlings (n=214) yielded an equally high number of species (n=22) to that occurring in all active community samples together (a total of 1,730 individuals were analysed). We conclude that the analysis of dormant propagules may form a cost-efficient alternative tool to the analysis of active community samples for an integrated assessment of cladoceran communities.Keywords
This publication has 44 references indexed in Scilit:
- Optimizing reproduction in a randomly varying environmentPublished by Elsevier ,2004
- METACOMMUNITY STRUCTURE: SYNERGY OF BIOTIC INTERACTIONS AS SELECTIVE AGENTS AND DISPERSAL AS FUELEcology, 2004
- A comparison of egg‐bank and long‐term plankton dynamics of two Daphnia species, D. hyalina and D. galeata: Potentials and limits of reconstructionLimnology and Oceanography, 2003
- Ecological and Genetic Correlates of Long‐Term Population Trends in the Park Grass ExperimentThe American Naturalist, 2002
- Genetic changes within freshwater bryozoan populations suggest temporal gene flow from statoblast banksLimnology and Oceanography, 2001
- Long–term genetic shifts in a microcrustacean egg bank associated with anthropogenic changes in the Lake Constance ecosystemProceedings Of The Royal Society B-Biological Sciences, 1997
- Role of Overlapping Generations in Maintaining Genetic Variation in a Fluctuating EnvironmentThe American Naturalist, 1994
- Calanoid copepod, cladoceran, and rotifer eggs in sea-bottom sediments of northern Californian coastal waters: Identification, occurrence and hatchingMarine Biology, 1990
- Rate of evolution slowed by a dormant propagule poolNature, 1988
- The Clonal Ecology of Daphnia magna (Crustacea:Cladocera): I. Temporal Changes in the Clonal Structure of a Natural PopulationJournal of Animal Ecology, 1987