Literature DB >> 24598423

Resolving the roles of body size and species identity in driving functional diversity.

Volker H W Rudolf1, Nick L Rasmussen, Christopher J Dibble, Benjamin G Van Allen.   

Abstract

Efforts to characterize food webs have generated two influential approaches that reduce the complexity of natural communities. The traditional approach groups individuals based on their species identity, while recently developed approaches group individuals based on their body size. While each approach has provided important insights, they have largely been used in parallel in different systems. Consequently, it remains unclear how body size and species identity interact, hampering our ability to develop a more holistic framework that integrates both approaches. We address this conceptual gap by developing a framework which describes how both approaches are related to each other, revealing that both approaches share common but untested assumptions about how variation across size classes or species influences differences in ecological interactions among consumers. Using freshwater mesocosms with dragonfly larvae as predators, we then experimentally demonstrate that while body size strongly determined how predators affected communities, these size effects were species specific and frequently nonlinear, violating a key assumption underlying both size- and species-based approaches. Consequently, neither purely species- nor size-based approaches were adequate to predict functional differences among predators. Instead, functional differences emerged from the synergistic effects of body size and species identity. This clearly demonstrates the need to integrate size- and species-based approaches to predict functional diversity within communities.

Keywords:  allometry; food web; functional diversity; ontogenetic niche shift; size spectra; trophic cascade

Mesh:

Year:  2014        PMID: 24598423      PMCID: PMC3953845          DOI: 10.1098/rspb.2013.3203

Source DB:  PubMed          Journal:  Proc Biol Sci        ISSN: 0962-8452            Impact factor:   5.349


  26 in total

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5.  Allometric scaling enhances stability in complex food webs.

Authors:  Ulrich Brose; Richard J Williams; Neo D Martinez
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Authors:  Ulrich Brose; Tomas Jonsson; Eric L Berlow; Philip Warren; Carolin Banasek-Richter; Louis-Félix Bersier; Julia L Blanchard; Thomas Brey; Stephen R Carpenter; Marie-France Cattin Blandenier; Lara Cushing; Hassan Ali Dawah; Tony Dell; Francois Edwards; Sarah Harper-Smith; Ute Jacob; Mark E Ledger; Neo D Martinez; Jane Memmott; Katja Mintenbeck; John K Pinnegar; Björn C Rall; Thomas S Rayner; Daniel C Reuman; Liliane Ruess; Werner Ulrich; Richard J Williams; Guy Woodward; Joel E Cohen
Journal:  Ecology       Date:  2006-10       Impact factor: 5.499

7.  Allometric degree distributions facilitate food-web stability.

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8.  Size, foraging, and food web structure.

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Journal:  Proc Natl Acad Sci U S A       Date:  2008-03-12       Impact factor: 11.205

9.  Global-scale predictions of community and ecosystem properties from simple ecological theory.

Authors:  Simon Jennings; Frédéric Mélin; Julia L Blanchard; Rodney M Forster; Nicholas K Dulvy; Rod W Wilson
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Journal:  Ecol Lett       Date:  2008-09-17       Impact factor: 9.492

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Authors:  William J Resetarits; Jason R Bohenek; Matthew R Pintar
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Journal:  R Soc Open Sci       Date:  2017-02-08       Impact factor: 2.963

6.  Intraspecific diversity loss in a predator species alters prey community structure and ecosystem functions.

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7.  Influence of habitat complexity on the prey mortality in IGP system involving insect predators (Heteroptera) and prey (Diptera): Implications in biological control.

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8.  Functional, size and taxonomic diversity of fish along a depth gradient in the deep sea.

Authors:  Beth L Mindel; Francis C Neat; Clive N Trueman; Thomas J Webb; Julia L Blanchard
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9.  Species-Specific Effects of Ant Inhabitants on Bromeliad Nutrition.

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