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The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis)

Globally, biological invasions can have strong impacts on biodiversity as well as ecosystem functioning. While less conspicuous than introduced aboveground organisms, introduced belowground organisms may have similarly strong effects. Here, we synthesize for the first time the impacts of introduced...

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Autores principales: Craven, Dylan, Thakur, Madhav P., Cameron, Erin K., Frelich, Lee E., Beauséjour, Robin, Blair, Robert B., Blossey, Bernd, Burtis, James, Choi, Amy, Dávalos, Andrea, Fahey, Timothy J., Fisichelli, Nicholas A., Gibson, Kevin, Handa, I. Tanya, Hopfensperger, Kristine, Loss, Scott R., Nuzzo, Victoria, Maerz, John C., Sackett, Tara, Scharenbroch, Bryant C., Smith, Sandy M., Vellend, Mark, Umek, Lauren G., Eisenhauer, Nico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5324548/
https://www.ncbi.nlm.nih.gov/pubmed/27590777
http://dx.doi.org/10.1111/gcb.13446
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author Craven, Dylan
Thakur, Madhav P.
Cameron, Erin K.
Frelich, Lee E.
Beauséjour, Robin
Blair, Robert B.
Blossey, Bernd
Burtis, James
Choi, Amy
Dávalos, Andrea
Fahey, Timothy J.
Fisichelli, Nicholas A.
Gibson, Kevin
Handa, I. Tanya
Hopfensperger, Kristine
Loss, Scott R.
Nuzzo, Victoria
Maerz, John C.
Sackett, Tara
Scharenbroch, Bryant C.
Smith, Sandy M.
Vellend, Mark
Umek, Lauren G.
Eisenhauer, Nico
author_facet Craven, Dylan
Thakur, Madhav P.
Cameron, Erin K.
Frelich, Lee E.
Beauséjour, Robin
Blair, Robert B.
Blossey, Bernd
Burtis, James
Choi, Amy
Dávalos, Andrea
Fahey, Timothy J.
Fisichelli, Nicholas A.
Gibson, Kevin
Handa, I. Tanya
Hopfensperger, Kristine
Loss, Scott R.
Nuzzo, Victoria
Maerz, John C.
Sackett, Tara
Scharenbroch, Bryant C.
Smith, Sandy M.
Vellend, Mark
Umek, Lauren G.
Eisenhauer, Nico
author_sort Craven, Dylan
collection PubMed
description Globally, biological invasions can have strong impacts on biodiversity as well as ecosystem functioning. While less conspicuous than introduced aboveground organisms, introduced belowground organisms may have similarly strong effects. Here, we synthesize for the first time the impacts of introduced earthworms on plant diversity and community composition in North American forests. We conducted a meta‐analysis using a total of 645 observations to quantify mean effect sizes of associations between introduced earthworm communities and plant diversity, cover of plant functional groups, and cover of native and non‐native plants. We found that plant diversity significantly declined with increasing richness of introduced earthworm ecological groups. While plant species richness or evenness did not change with earthworm invasion, our results indicate clear changes in plant community composition: cover of graminoids and non‐native plant species significantly increased, and cover of native plant species (of all functional groups) tended to decrease, with increasing earthworm biomass. Overall, these findings support the hypothesis that introduced earthworms facilitate particular plant species adapted to the abiotic conditions of earthworm‐invaded forests. Further, our study provides evidence that introduced earthworms are associated with declines in plant diversity in North American forests. Changing plant functional composition in these forests may have long‐lasting effects on ecosystem functioning.
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spelling pubmed-53245482017-03-08 The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis) Craven, Dylan Thakur, Madhav P. Cameron, Erin K. Frelich, Lee E. Beauséjour, Robin Blair, Robert B. Blossey, Bernd Burtis, James Choi, Amy Dávalos, Andrea Fahey, Timothy J. Fisichelli, Nicholas A. Gibson, Kevin Handa, I. Tanya Hopfensperger, Kristine Loss, Scott R. Nuzzo, Victoria Maerz, John C. Sackett, Tara Scharenbroch, Bryant C. Smith, Sandy M. Vellend, Mark Umek, Lauren G. Eisenhauer, Nico Glob Chang Biol Primary Research Articles Globally, biological invasions can have strong impacts on biodiversity as well as ecosystem functioning. While less conspicuous than introduced aboveground organisms, introduced belowground organisms may have similarly strong effects. Here, we synthesize for the first time the impacts of introduced earthworms on plant diversity and community composition in North American forests. We conducted a meta‐analysis using a total of 645 observations to quantify mean effect sizes of associations between introduced earthworm communities and plant diversity, cover of plant functional groups, and cover of native and non‐native plants. We found that plant diversity significantly declined with increasing richness of introduced earthworm ecological groups. While plant species richness or evenness did not change with earthworm invasion, our results indicate clear changes in plant community composition: cover of graminoids and non‐native plant species significantly increased, and cover of native plant species (of all functional groups) tended to decrease, with increasing earthworm biomass. Overall, these findings support the hypothesis that introduced earthworms facilitate particular plant species adapted to the abiotic conditions of earthworm‐invaded forests. Further, our study provides evidence that introduced earthworms are associated with declines in plant diversity in North American forests. Changing plant functional composition in these forests may have long‐lasting effects on ecosystem functioning. John Wiley and Sons Inc. 2016-09-03 2017-03 /pmc/articles/PMC5324548/ /pubmed/27590777 http://dx.doi.org/10.1111/gcb.13446 Text en © 2016 The Authors. Global Change Biology Published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Primary Research Articles
Craven, Dylan
Thakur, Madhav P.
Cameron, Erin K.
Frelich, Lee E.
Beauséjour, Robin
Blair, Robert B.
Blossey, Bernd
Burtis, James
Choi, Amy
Dávalos, Andrea
Fahey, Timothy J.
Fisichelli, Nicholas A.
Gibson, Kevin
Handa, I. Tanya
Hopfensperger, Kristine
Loss, Scott R.
Nuzzo, Victoria
Maerz, John C.
Sackett, Tara
Scharenbroch, Bryant C.
Smith, Sandy M.
Vellend, Mark
Umek, Lauren G.
Eisenhauer, Nico
The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis)
title The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis)
title_full The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis)
title_fullStr The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis)
title_full_unstemmed The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis)
title_short The unseen invaders: introduced earthworms as drivers of change in plant communities in North American forests (a meta‐analysis)
title_sort unseen invaders: introduced earthworms as drivers of change in plant communities in north american forests (a meta‐analysis)
topic Primary Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5324548/
https://www.ncbi.nlm.nih.gov/pubmed/27590777
http://dx.doi.org/10.1111/gcb.13446
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