Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm Plantations

Focusing on nematodes and their well-developed indices of community, ecosystem structure and function, we investigated the effects of the conversion of rainforest into rubber and oil palm plantations in Sumatra, Indonesia. Land use did not affect the total abundance of litter- and soil-dwelling nema...

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Main Authors: Valentyna Krashevska, Alexey A. Kudrin, Rahayu Widyastuti, Stefan Scheu
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-12-01
Series:Frontiers in Ecology and Evolution
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fevo.2019.00487/full
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author Valentyna Krashevska
Alexey A. Kudrin
Rahayu Widyastuti
Stefan Scheu
Stefan Scheu
author_facet Valentyna Krashevska
Alexey A. Kudrin
Rahayu Widyastuti
Stefan Scheu
Stefan Scheu
author_sort Valentyna Krashevska
collection DOAJ
description Focusing on nematodes and their well-developed indices of community, ecosystem structure and function, we investigated the effects of the conversion of rainforest into rubber and oil palm plantations in Sumatra, Indonesia. Land use did not affect the total abundance of litter- and soil-dwelling nematodes, neither in riparian nor in well-drained sites. However, the rainforest nematode community differed from communities in plantations, with differences in litter being more pronounced compared to soil. In litter, fungivores and nematodes with short generation time (c-p2) increased in monoculture plantations, while that of bacterivores, herbivores, and nematodes with longer generation time and higher sensitivity to disturbances (c-p3) decreased. This indicates higher environmental pressure on nematodes in monoculture plantations than in rainforest. In soil of monoculture plantations, bacterivores, and c-p3 nematodes decreased while herbivores increased. This suggests that the damage of plants by nematodes in oil palm plantations exceeds that in rainforest. Overall, nematode functional diversity indices suggest that the stability of the decomposer community is higher in rainforest compared to monoculture plantations. Importantly, functional diversity indices were much more meaningful than nematode abundance. Further, changes with land use manifested more in litter than in soil, reflecting that nematode communities in soil are buffered against changes in land use and associated environmental conditions. Therefore, to fully assess changes in the structure and functioning of decomposer systems with changes in land use, the litter layer, which often receives little attention, requires more careful consideration.
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spelling doaj.art-c95dcb3474ef425a854807fbc446eca72022-12-22T00:47:25ZengFrontiers Media S.A.Frontiers in Ecology and Evolution2296-701X2019-12-01710.3389/fevo.2019.00487497192Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm PlantationsValentyna Krashevska0Alexey A. Kudrin1Rahayu Widyastuti2Stefan Scheu3Stefan Scheu4J.F. Blumenbach Institute of Zoology and Anthropology, University of Göttingen, Göttingen, GermanyInstitute of Biology of Komi Scientific Centre of the Ural Branch of the Russian Academy of Sciences, Syktyvkar, RussiaDepartment of Soil Sciences and Land Resources, Institut Pertanian Bogor, Bogor, IndonesiaJ.F. Blumenbach Institute of Zoology and Anthropology, University of Göttingen, Göttingen, GermanyCentre of Biodiversity and Sustainable Land Use, Göttingen, GermanyFocusing on nematodes and their well-developed indices of community, ecosystem structure and function, we investigated the effects of the conversion of rainforest into rubber and oil palm plantations in Sumatra, Indonesia. Land use did not affect the total abundance of litter- and soil-dwelling nematodes, neither in riparian nor in well-drained sites. However, the rainforest nematode community differed from communities in plantations, with differences in litter being more pronounced compared to soil. In litter, fungivores and nematodes with short generation time (c-p2) increased in monoculture plantations, while that of bacterivores, herbivores, and nematodes with longer generation time and higher sensitivity to disturbances (c-p3) decreased. This indicates higher environmental pressure on nematodes in monoculture plantations than in rainforest. In soil of monoculture plantations, bacterivores, and c-p3 nematodes decreased while herbivores increased. This suggests that the damage of plants by nematodes in oil palm plantations exceeds that in rainforest. Overall, nematode functional diversity indices suggest that the stability of the decomposer community is higher in rainforest compared to monoculture plantations. Importantly, functional diversity indices were much more meaningful than nematode abundance. Further, changes with land use manifested more in litter than in soil, reflecting that nematode communities in soil are buffered against changes in land use and associated environmental conditions. Therefore, to fully assess changes in the structure and functioning of decomposer systems with changes in land use, the litter layer, which often receives little attention, requires more careful consideration.https://www.frontiersin.org/article/10.3389/fevo.2019.00487/fullmicrofaunatrophic groupsland usemonoculturelowland rainforestriparian area
spellingShingle Valentyna Krashevska
Alexey A. Kudrin
Rahayu Widyastuti
Stefan Scheu
Stefan Scheu
Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm Plantations
Frontiers in Ecology and Evolution
microfauna
trophic groups
land use
monoculture
lowland rainforest
riparian area
title Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm Plantations
title_full Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm Plantations
title_fullStr Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm Plantations
title_full_unstemmed Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm Plantations
title_short Changes in Nematode Communities and Functional Diversity With the Conversion of Rainforest Into Rubber and Oil Palm Plantations
title_sort changes in nematode communities and functional diversity with the conversion of rainforest into rubber and oil palm plantations
topic microfauna
trophic groups
land use
monoculture
lowland rainforest
riparian area
url https://www.frontiersin.org/article/10.3389/fevo.2019.00487/full
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