Literature DB >> 25656586

Food web persistence is enhanced by non-trophic interactions.

Edd Hammill1, Pavel Kratina, Matthijs Vos, Owen L Petchey, Bradley R Anholt.   

Abstract

The strength of interspecific interactions is often proposed to affect food web stability, with weaker interactions increasing the persistence of species, and food webs as a whole. However, the mechanisms that modify interaction strengths, and their effects on food web persistence are not fully understood. Using food webs containing different combinations of predator, prey, and nonprey species, we investigated how predation risk of susceptible prey is affected by the presence of species not directly trophically linked to either predators or prey. We predicted that indirect alterations to the strength of trophic interactions translate to changes in persistence time of extinction-prone species. We assembled interaction webs of protist consumers and turbellarian predators with eight different combinations of prey, predators and nonprey species, and recorded abundances for over 130 prey generations. Persistence of predation-susceptible species was increased by the presence of nonprey. Furthermore, multiple nonprey species acted synergistically to increase prey persistence, such that persistence was greater than would be predicted from the dynamics of simpler food webs. We also found evidence suggesting increased food web complexity may weaken interspecific competition, increasing persistence of poorer competitors. Our results demonstrate that persistence times in complex food webs cannot be predicted from the dynamics of simplified systems, and that species not directly involved in consumptive interactions likely play key roles in maintaining persistence. Global species diversity is currently declining at an unprecedented rate and our findings reveal that concurrent loss of species that modify trophic interactions may have unpredictable consequences for food web stability.

Mesh:

Year:  2015        PMID: 25656586     DOI: 10.1007/s00442-015-3244-3

Source DB:  PubMed          Journal:  Oecologia        ISSN: 0029-8549            Impact factor:   3.225


  17 in total

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Authors:  Edd Hammill; Owen L Petchey; Bradley R Anholt
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Authors:  Pavel Kratina; Matthijs Vos; Bradley R Anholt
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4.  Food web architecture and population dynamics in laboratory microcosms of protists.

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5.  Functional responses modified by predator density.

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Journal:  Oecologia       Date:  2008-11-26       Impact factor: 3.225

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