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Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography

Grazing‐induced changes in plant quality have been suggested to drive the negative delayed density dependence exhibited by many herbivore species, but little field evidence exists to support this hypothesis. We tested a key premise of the hypothesis that reciprocal feedback between vole grazing pres...

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Autores principales: Ruffino, Lise, Hartley, Susan E., DeGabriel, Jane L., Lambin, Xavier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6145023/
https://www.ncbi.nlm.nih.gov/pubmed/30250660
http://dx.doi.org/10.1002/ece3.4204
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author Ruffino, Lise
Hartley, Susan E.
DeGabriel, Jane L.
Lambin, Xavier
author_facet Ruffino, Lise
Hartley, Susan E.
DeGabriel, Jane L.
Lambin, Xavier
author_sort Ruffino, Lise
collection PubMed
description Grazing‐induced changes in plant quality have been suggested to drive the negative delayed density dependence exhibited by many herbivore species, but little field evidence exists to support this hypothesis. We tested a key premise of the hypothesis that reciprocal feedback between vole grazing pressure and the induction of anti‐herbivore silicon defenses in grasses drives observed population cycles in a large‐scale field experiment in northern England. We repeatedly reduced population densities of field voles (Microtus agrestis) on replicated 1‐ha grassland plots at Kielder Forest, northern England, over a period of 1 year. Subsequently, we tested for the impact of past density on vole life history traits in spring, and whether these effects were driven by induced silicon defenses in the voles’ major over‐winter food, the grass Deschampsia caespitosa. After several months of density manipulation, leaf silicon concentrations diverged and averaged 22% lower on sites where vole density had been reduced, but this difference did not persist beyond the period of the density manipulations. There were no significant effects of our density manipulations on vole body mass, spring population growth rate, or mean date for the onset of spring reproduction the following year. These findings show that grazing by field voles does induce increased silicon defenses in grasses at a landscape scale. However, at the vole densities encountered, levels of plant damage appear to be below those needed to induce changes in silicon levels large and persistent enough to affect vole performance, confirming the threshold effects we have previously observed in laboratory‐based studies. Our findings do not support the plant quality hypothesis for observed vole population cycles in northern England, at least over the range of vole densities that now prevail here.
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spelling pubmed-61450232018-09-24 Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography Ruffino, Lise Hartley, Susan E. DeGabriel, Jane L. Lambin, Xavier Ecol Evol Original Research Grazing‐induced changes in plant quality have been suggested to drive the negative delayed density dependence exhibited by many herbivore species, but little field evidence exists to support this hypothesis. We tested a key premise of the hypothesis that reciprocal feedback between vole grazing pressure and the induction of anti‐herbivore silicon defenses in grasses drives observed population cycles in a large‐scale field experiment in northern England. We repeatedly reduced population densities of field voles (Microtus agrestis) on replicated 1‐ha grassland plots at Kielder Forest, northern England, over a period of 1 year. Subsequently, we tested for the impact of past density on vole life history traits in spring, and whether these effects were driven by induced silicon defenses in the voles’ major over‐winter food, the grass Deschampsia caespitosa. After several months of density manipulation, leaf silicon concentrations diverged and averaged 22% lower on sites where vole density had been reduced, but this difference did not persist beyond the period of the density manipulations. There were no significant effects of our density manipulations on vole body mass, spring population growth rate, or mean date for the onset of spring reproduction the following year. These findings show that grazing by field voles does induce increased silicon defenses in grasses at a landscape scale. However, at the vole densities encountered, levels of plant damage appear to be below those needed to induce changes in silicon levels large and persistent enough to affect vole performance, confirming the threshold effects we have previously observed in laboratory‐based studies. Our findings do not support the plant quality hypothesis for observed vole population cycles in northern England, at least over the range of vole densities that now prevail here. John Wiley and Sons Inc. 2018-07-13 /pmc/articles/PMC6145023/ /pubmed/30250660 http://dx.doi.org/10.1002/ece3.4204 Text en © 2018 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Ruffino, Lise
Hartley, Susan E.
DeGabriel, Jane L.
Lambin, Xavier
Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography
title Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography
title_full Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography
title_fullStr Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography
title_full_unstemmed Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography
title_short Population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography
title_sort population‐level manipulations of field vole densities induce subsequent changes in plant quality but no impacts on vole demography
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6145023/
https://www.ncbi.nlm.nih.gov/pubmed/30250660
http://dx.doi.org/10.1002/ece3.4204
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