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Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape

Tropical forest fragmentation creates insular biological communities that undergo species loss and changes in community composition over time, due to area- and edge-effects. Woody lianas thrive in degraded and secondary forests, due to their competitive advantage over trees in these habitats. Lianas...

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Autores principales: Jones, Isabel L., Peres, Carlos A., Benchimol, Maíra, Bunnefeld, Lynsey, Dent, Daisy H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5644977/
https://www.ncbi.nlm.nih.gov/pubmed/29040272
http://dx.doi.org/10.1371/journal.pone.0185527
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author Jones, Isabel L.
Peres, Carlos A.
Benchimol, Maíra
Bunnefeld, Lynsey
Dent, Daisy H.
author_facet Jones, Isabel L.
Peres, Carlos A.
Benchimol, Maíra
Bunnefeld, Lynsey
Dent, Daisy H.
author_sort Jones, Isabel L.
collection PubMed
description Tropical forest fragmentation creates insular biological communities that undergo species loss and changes in community composition over time, due to area- and edge-effects. Woody lianas thrive in degraded and secondary forests, due to their competitive advantage over trees in these habitats. Lianas compete both directly and indirectly with trees, increasing tree mortality and turnover. Despite our growing understanding of liana-tree dynamics, we lack detailed knowledge of the assemblage-level responses of lianas themselves to fragmentation, particularly in evergreen tropical forests. We examine the responses of both sapling and mature liana communities to landscape-scale forest insularization induced by a mega hydroelectric dam in the Brazilian Amazon. Detailed field inventories were conducted on islands created during reservoir filling, and in nearby mainland continuous forest. We assess the relative importance of variables associated with habitat fragmentation such as area, isolation, surrounding forest cover, fire and wind disturbance, on liana community attributes including abundance, basal area, diversity, and composition. We also explore patterns of liana dominance relative to tree saplings and adults ≥10 cm diameter at breast height. We find that 1) liana community composition remains remarkably similar across mainland continuous forest and islands, regardless of extreme area- and edge- effects and the loss of vertebrate dispersers in the latter; and 2) lianas are increasing in dominance relative to trees in the sapling layer in the most degraded islands, with both the amount of forest cover surrounding islands and fire disturbance history predicting liana dominance. Our data suggest that liana communities persist intact in isolated forests, regardless of extreme area- and edge-effects; while in contrast, tree communities simultaneously show evidence of increased turnover and supressed recruitment. These processes may lead to lianas becoming a dominant component of this dam-induced fragmented landscape in the future, due to their competitive advantage over trees in degraded forest habitats. Additional loss of tree biomass and diversity brought about through competition with lianas, and the concurrent loss of carbon storage, should be accounted for in impact assessments of future dam development.
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spelling pubmed-56449772017-10-30 Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape Jones, Isabel L. Peres, Carlos A. Benchimol, Maíra Bunnefeld, Lynsey Dent, Daisy H. PLoS One Research Article Tropical forest fragmentation creates insular biological communities that undergo species loss and changes in community composition over time, due to area- and edge-effects. Woody lianas thrive in degraded and secondary forests, due to their competitive advantage over trees in these habitats. Lianas compete both directly and indirectly with trees, increasing tree mortality and turnover. Despite our growing understanding of liana-tree dynamics, we lack detailed knowledge of the assemblage-level responses of lianas themselves to fragmentation, particularly in evergreen tropical forests. We examine the responses of both sapling and mature liana communities to landscape-scale forest insularization induced by a mega hydroelectric dam in the Brazilian Amazon. Detailed field inventories were conducted on islands created during reservoir filling, and in nearby mainland continuous forest. We assess the relative importance of variables associated with habitat fragmentation such as area, isolation, surrounding forest cover, fire and wind disturbance, on liana community attributes including abundance, basal area, diversity, and composition. We also explore patterns of liana dominance relative to tree saplings and adults ≥10 cm diameter at breast height. We find that 1) liana community composition remains remarkably similar across mainland continuous forest and islands, regardless of extreme area- and edge- effects and the loss of vertebrate dispersers in the latter; and 2) lianas are increasing in dominance relative to trees in the sapling layer in the most degraded islands, with both the amount of forest cover surrounding islands and fire disturbance history predicting liana dominance. Our data suggest that liana communities persist intact in isolated forests, regardless of extreme area- and edge-effects; while in contrast, tree communities simultaneously show evidence of increased turnover and supressed recruitment. These processes may lead to lianas becoming a dominant component of this dam-induced fragmented landscape in the future, due to their competitive advantage over trees in degraded forest habitats. Additional loss of tree biomass and diversity brought about through competition with lianas, and the concurrent loss of carbon storage, should be accounted for in impact assessments of future dam development. Public Library of Science 2017-10-17 /pmc/articles/PMC5644977/ /pubmed/29040272 http://dx.doi.org/10.1371/journal.pone.0185527 Text en © 2017 Jones et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Jones, Isabel L.
Peres, Carlos A.
Benchimol, Maíra
Bunnefeld, Lynsey
Dent, Daisy H.
Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape
title Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape
title_full Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape
title_fullStr Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape
title_full_unstemmed Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape
title_short Woody lianas increase in dominance and maintain compositional integrity across an Amazonian dam-induced fragmented landscape
title_sort woody lianas increase in dominance and maintain compositional integrity across an amazonian dam-induced fragmented landscape
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5644977/
https://www.ncbi.nlm.nih.gov/pubmed/29040272
http://dx.doi.org/10.1371/journal.pone.0185527
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