Field Experiments on Interspecific Competition
- 1 August 1983
- journal article
- review article
- Published by University of Chicago Press in The American Naturalist
- Vol. 122 (2) , 240-285
- https://doi.org/10.1086/284133
Abstract
Rare until recently, field-experimental studies of interspecific competition now number well over 150. Competition was found in 90% of the studies and 76% of their species, indicating its pervasive importance in ecological systems. Exploitative competition and interference competition were apparent mechanisms about equally often. Few experiments showed year-year variation in the existence of competition, though more did in its intensity; many were not long-term. The Hairston-Slobodkin-Smith hypothesis concerning variation in the importance of competition between trophic levels was strongly supported for terrestrial and freshwater systems. Producers and granivores, nectarivores, carnivores and scavengers taken together, showed more competition than did phytophagous herbivores and filter feeders. In marine systems, virtually no trend was detectable. Large heterotrophs competed more than small ones in most comparisons, and other properties possibly deterring predation, such as stinging behavior, seemed also characteristic of species competing frequently. Among terrestrial plants and certain terrestrial animals but not all, experiments carried out in enclosures were more likely to show competition than unenclosed experiments. A greater ecological overlap implied a greater tendency to compete, as determined experimentally, when niche dimensions were food type or microhabitat; the opposite was true for macrohabitat. A substantial number of studies showed asymmetry in their species'' response to competition; larger species were significantly more often superior than smaller ones, though a variety of other apparent reasons for asymmetry also existed. The integration of competition theory into field experimentation has only just begun.This publication has 33 references indexed in Scilit:
- A Community Matrix Analysis of Heliconia Insect CommunitiesThe American Naturalist, 1976
- Species Diversity Gradients: Synthesis of the Roles of Predation, Competition, and Temporal HeterogeneityThe American Naturalist, 1976
- Effects of Species Removal on an Old‐field Plant CommunityEcology, 1975
- Resource Partitioning in Ecological CommunitiesScience, 1974
- Experimental studies of competitive interaction in a two-species system. I. Microtus and Clethrionomys species in enclosuresCanadian Journal of Zoology, 1969
- Some Competitive Relationships between Agropyron spicatum and Bromus tectorumEcological Monographs, 1967
- Regulation in Terrestrial Ecosystems, and the Implied Balance of NatureThe American Naturalist, 1967
- Ecological and Competitive Relations Among Three Species of Frogs (Genus Rana)Ecology, 1966
- Homage to Santa Rosalia or Why Are There So Many Kinds of Animals?The American Naturalist, 1959
- Causes of Succession on Old Fields of the Piedmont, North CarolinaEcological Monographs, 1950