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Organism life cycles, predation, and the structure of marine pelagic ecosystems

Marine Ecology Progress Series · 1996 · Vol. 130 · pp. 277–293
PG VerityVictor Smetacek

Abstract

This paper explores the notion that the theoretical basis for contemporary research concerning the structure and function of marine pelagic ecosystems is self-limiting. While some findings such as the microbial food web have extended our knowledge of the biological components of the upper water column and their relationships to fluxes of materials and energy, they have not advanced our understanding of why specific pelagic forms occur in time and space, and why only some attain dominant status and contribute the bulk of biogenic fluxes emanating from the mixed layer. It is argued here that a major impediment to improved conceptual models is the historic focus on resource-dnven or 'bottom-up' factors as being the dominant variables structuring planktonic ecosystems. Evidence is presented that predation or 'top-down' trophic effects may be equally important in specifying the occurrence of particular taxa, the biomass within adjacent trophic levels, and the morphology of dominant herbivores and carnivores. It is suggested that key species, because of unique combinations of life history strategies, metabolic demands, and physiological performance, may exert a dominant role in the extent to which predatory interactions cascade through pelagic food webs. There is considerable evidence of evolution of predation avoidance strategies among phytoplankton and zooplankton. It is proposed that future research might profitably be directed toward the question of how the pelagic environment selects for life histories and morphologles of organisms under conditions when resource availability and predation are both significant structural buttresses. Methodological approaches should include detailed studies of dominant key taxa from different environments, with the goal of identifying the crlt~cal aspects of life history, behavior, or morphology which account for their success.

Marine and coastal ecosystemsMarine Bivalve and Aquaculture StudiesMarine and coastal plant biologyPelagic zoneTrophic levelEcologyTrophic cascadeFood webMarine ecosystemPredationApex predatorEcosystemBiology

Funding

  • National Science Foundation
  • U.S. Department of Energy
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References
Predation and Freshwater Communities
Journal of Animal Ecology · 1982 · 984 citations
Community Structure, Population Control, and Competition
The American Naturalist · 1960 · 3,443 citations
On the diets of calanoid copepods
Marine Ecology Progress Series · 1993 · 556 citations
Trophic Relationships in Freshwater Pelagic Ecosystems
Canadian Journal of Fisheries and Aquatic Sciences · 1986 · 1,008 citations
The Ocean's Food Web, A Changing Paradigm
BioScience · 1974 · 1,330 citations
Vertical migration in zooplankton as a predator avoidance mechanism1
Limnology and Oceanography · 1976 · 713 citations
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Organism life cycles, predation, and the structure of marine pelagic ecosystems · Scinovex