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Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C)

Land-use change is threatening biodiversity worldwide, affecting above and below ground animal communities by altering their trophic niches. However, shifts in trophic niches with changes in land use are little studied and this applies in particular to belowground animals. Oribatid mites are among t...

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Autores principales: Krause, Alena, Sandmann, Dorothee, Bluhm, Sarah L., Ermilov, Sergey, Widyastuti, Rahayu, Haneda, Noor Farikhah, Scheu, Stefan, Maraun, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6814230/
https://www.ncbi.nlm.nih.gov/pubmed/31652281
http://dx.doi.org/10.1371/journal.pone.0224520
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author Krause, Alena
Sandmann, Dorothee
Bluhm, Sarah L.
Ermilov, Sergey
Widyastuti, Rahayu
Haneda, Noor Farikhah
Scheu, Stefan
Maraun, Mark
author_facet Krause, Alena
Sandmann, Dorothee
Bluhm, Sarah L.
Ermilov, Sergey
Widyastuti, Rahayu
Haneda, Noor Farikhah
Scheu, Stefan
Maraun, Mark
author_sort Krause, Alena
collection PubMed
description Land-use change is threatening biodiversity worldwide, affecting above and below ground animal communities by altering their trophic niches. However, shifts in trophic niches with changes in land use are little studied and this applies in particular to belowground animals. Oribatid mites are among the most abundant soil animals, involved in decomposition processes and nutrient cycling. We analyzed shifts in trophic niches of six soil-living oribatid mite species with the conversion of lowland secondary rainforest into plantation systems of different land-use intensity (jungle rubber, rubber and oil palm monoculture plantation) in two regions of southwest Sumatra, Indonesia. We measured stable isotope ratios ((13)C/(12)C and (15)N/(14)N) of single oribatid mite individuals and calculated shifts in stable isotope niches with changes in land use. Significant changes in stable isotope ratios in three of the six studied oribatid mite species indicated that these species shift their trophic niches with changes in land use. The trophic shift was either due to changes in trophic level (δ(15)N values), to changes in the use of basal resources (δ(13)C values) or to changes in both. The trophic shift generally was most pronounced between more natural systems (rainforest and jungle rubber) on one side and monoculture plantations systems (rubber and oil palm plantations) on the other, reflecting that the shifts were related to land-use intensity. Although trophic niches of the other three studied species did not differ significantly between land-use systems they followed a similar trend. Overall, the results suggest that colonization of very different ecosystems such as rainforest and intensively managed monoculture plantations by oribatid mite species likely is related to their ability to shift their trophic niches, i.e. to trophic plasticity.
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spelling pubmed-68142302019-11-03 Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C) Krause, Alena Sandmann, Dorothee Bluhm, Sarah L. Ermilov, Sergey Widyastuti, Rahayu Haneda, Noor Farikhah Scheu, Stefan Maraun, Mark PLoS One Research Article Land-use change is threatening biodiversity worldwide, affecting above and below ground animal communities by altering their trophic niches. However, shifts in trophic niches with changes in land use are little studied and this applies in particular to belowground animals. Oribatid mites are among the most abundant soil animals, involved in decomposition processes and nutrient cycling. We analyzed shifts in trophic niches of six soil-living oribatid mite species with the conversion of lowland secondary rainforest into plantation systems of different land-use intensity (jungle rubber, rubber and oil palm monoculture plantation) in two regions of southwest Sumatra, Indonesia. We measured stable isotope ratios ((13)C/(12)C and (15)N/(14)N) of single oribatid mite individuals and calculated shifts in stable isotope niches with changes in land use. Significant changes in stable isotope ratios in three of the six studied oribatid mite species indicated that these species shift their trophic niches with changes in land use. The trophic shift was either due to changes in trophic level (δ(15)N values), to changes in the use of basal resources (δ(13)C values) or to changes in both. The trophic shift generally was most pronounced between more natural systems (rainforest and jungle rubber) on one side and monoculture plantations systems (rubber and oil palm plantations) on the other, reflecting that the shifts were related to land-use intensity. Although trophic niches of the other three studied species did not differ significantly between land-use systems they followed a similar trend. Overall, the results suggest that colonization of very different ecosystems such as rainforest and intensively managed monoculture plantations by oribatid mite species likely is related to their ability to shift their trophic niches, i.e. to trophic plasticity. Public Library of Science 2019-10-25 /pmc/articles/PMC6814230/ /pubmed/31652281 http://dx.doi.org/10.1371/journal.pone.0224520 Text en © 2019 Krause 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
Krause, Alena
Sandmann, Dorothee
Bluhm, Sarah L.
Ermilov, Sergey
Widyastuti, Rahayu
Haneda, Noor Farikhah
Scheu, Stefan
Maraun, Mark
Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C)
title Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C)
title_full Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C)
title_fullStr Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C)
title_full_unstemmed Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C)
title_short Shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)N, (13)C)
title_sort shift in trophic niches of soil microarthropods with conversion of tropical rainforest into plantations as indicated by stable isotopes ((15)n, (13)c)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6814230/
https://www.ncbi.nlm.nih.gov/pubmed/31652281
http://dx.doi.org/10.1371/journal.pone.0224520
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