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Diverse responses of species to landscape fragmentation in a simple food chain. | LitMetric

Diverse responses of species to landscape fragmentation in a simple food chain.

J Anim Ecol

Institute for Chemistry and Biology of the Marine Environment (ICBM), University of Oldenburg, Oldenburg, Germany.

Published: September 2017

AI Article Synopsis

  • * A new modeling framework explores how habitat fragmentation affects species persistence in a three-level food chain, revealing that dispersal range influences species responses to habitat changes.
  • * Findings show that while habitat loss typically leads to extinctions, some prey species may actually benefit from it, indicating that responses to habitat destruction can be complex and vary by species interactions within the food web.

Article Abstract

Habitat destruction, characterized by habitat loss and fragmentation, is a key driver of species extinction in spatial extended communities. Recently, there has been some progress in the theory of spatial food webs, however to date practically little is known about how habitat configurational fragmentation influences multi-trophic food web dynamics. To explore how habitat fragmentation affects species persistence in food webs, we introduce a modelling framework that describes the site occupancy of species in a tri-trophic system. We assume that species dispersal range increases with trophic level, exploiting pair-approximation techniques to describe the effect of habitat clustering. In accordance with the trophic rank hypothesis, both habitat loss and fragmentation generally cause species extinction, with stronger effects occurring at higher trophic levels. However, species display diverse responses (negative, neutral or positive) to habitat loss and fragmentation separately, depending on their dispersal range and trophic position. Counter-intuitively, prey species may benefit from habitat loss due to a release in top-down control. Similarly, habitat fragmentation has almost no influence on the site occupancy of the intermediate consumer in the tri-trophic system, though it decreases those of both basal species and top predator. Consequently, species' responses to habitat destruction vary as other species become extinct. Our results reiterate the importance of the interplay between bottom-up and top-down control in trophically linked communities, and highlight the complex responses occurring in even a simple food chain.

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Source
http://dx.doi.org/10.1111/1365-2656.12702DOI Listing

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