Toward a trophic theory of species diversity.

dc.contributor.author

Terborgh, John W

dc.date.accessioned

2026-05-01T21:55:12Z

dc.date.available

2026-05-01T21:55:12Z

dc.date.issued

2015-09

dc.description.abstract

Efforts to understand the ecological regulation of species diversity via bottom-up approaches have failed to yield a consensus theory. Theories based on the alternative of top-down regulation have fared better. Paine's discovery of keystone predation demonstrated that the regulation of diversity via top-down forcing could be simple, strong, and direct, yet ecologists have persistently failed to perceive generality in Paine's result. Removing top predators destabilizes many systems and drives transitions to radically distinct alternative states. These transitions typically involve community reorganization and loss of diversity, implying that top-down forcing is crucial to diversity maintenance. Contrary to the expectations of bottom-up theories, many terrestrial herbivores and mesopredators are capable of sustained order-of-magnitude population increases following release from predation, negating the assumption that populations of primary consumers are resource limited and at or near carrying capacity. Predation sensu lato (to include Janzen-Connell mortality agents) has been shown to promote diversity in a wide range of ecosystems, including rocky intertidal shelves, coral reefs, the nearshore ocean, streams, lakes, temperate and tropical forests, and arctic tundra. The compelling variety of these ecosystems suggests that top-down forcing plays a universal role in regulating diversity. This conclusion is further supported by studies showing that the reduction or absence of predation leads to diversity loss and, in the more dramatic cases, to catastrophic regime change. Here, I expand on the thesis that diversity is maintained by the interaction between predation and competition, such that strong top-down forcing reduces competition, allowing coexistence.

dc.identifier

112/37/11415

dc.identifier.issn

0027-8424

dc.identifier.issn

1091-6490

dc.identifier.uri

https://hdl.handle.net/10161/34588

dc.language

eng

dc.publisher

Proceedings of the National Academy of Sciences

dc.relation.ispartof

Proceedings of the National Academy of Sciences of the United States of America

dc.relation.isversionof

10.1073/pnas.1501070112

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Animals

dc.subject

Predatory Behavior

dc.subject

Ecology

dc.subject

Conservation of Natural Resources

dc.subject

Ecosystem

dc.subject

Biodiversity

dc.subject

Food Chain

dc.subject

Population Dynamics

dc.subject

Species Specificity

dc.subject

Models, Biological

dc.subject

Oceans and Seas

dc.subject

Extinction, Biological

dc.subject

Coral Reefs

dc.subject

Herbivory

dc.title

Toward a trophic theory of species diversity.

dc.type

Journal article

duke.contributor.orcid

Terborgh, John W|0000-0002-8238-4583

pubs.begin-page

11415

pubs.end-page

11422

pubs.issue

37

pubs.organisational-group

Duke

pubs.organisational-group

Nicholas School of the Environment

pubs.organisational-group

Environmental Natural Science

pubs.publication-status

Published

pubs.volume

112

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