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KNAW Pure
Dataset
Data sources: KNAW Pure
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ZENODO
Dataset . 2018
License: CC 0
Data sources: ZENODO
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DRYAD
Dataset . 2018
License: CC 0
Data sources: Datacite
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Data from: Plant community composition but not plant traits determine the outcome of soil legacy effects on plants and insects

Authors: Heinen, Robin; van der Sluis, Martijn; Biere, Arjen; Harvey, Jeffrey A.; Bezemer, T. Martijn;

Data from: Plant community composition but not plant traits determine the outcome of soil legacy effects on plants and insects

Abstract

1.Plants leave species-specific legacies in the soil they grow in that can represent changes in abiotic or biotic soil properties. It has been shown that such legacies can affect future plants that grow in the same soil (plant-soil feedback, PSF). Such processes have been studied in detail, but mostly on individual plants. Here we study PSF effects at the community level and use a trait-based approach both in the conditioning phase and in the feedback phase to study how twelve individual soil legacies influence six plant communities that differ in root size. 2.We tested if (I) grassland perennial species with large root systems would leave a stronger legacy than those with small root systems, (II) grass species would leave a more positive soil legacy than forbs and (III) communities with large root systems would be more responsive than small-rooted communities. We also tested (IV) whether a leaf chewing herbivore and a phloem feeder were affected by soil legacy effects in a community framework. 3.Our study shows that the six different plant communities that we used respond differently to soil legacies of twelve different plant species and their functional groups. Species with large root systems did not leave stronger legacies than species with small root systems, nor were communities with large root systems more responsive than communities with root systems. 4.Moreover, we show that when communities are affected by soil legacies, these effects carry over to the chewing herbivore Mamestra brassicae (Lepidoptera: Noctuidae) through induced behavioral changes resulting in better performance of a chewing herbivore on forb-conditioned soils than on grass-conditioned soils, whereas performance of the phloem feeder Rhopalosiphum padi (Hemiptera: Aphididae) remained unaffected. 5.Synthesis: The results of this study shed light on the variability of soil effects found in previous work on feedbacks in communities. Our study suggests that the composition of plant communities determines to a large part the response to soil legacies. Furthermore, the responses to soil legacies of herbivores feeding on the plant communities that we observed, suggests that in natural ecosystems, the vegetation history may also have an influence on contemporary herbivore assemblages. This opens up exciting new areas in plant-insect research and can have important implications for insect pest management.

Heinen et al 2017 Journal of Ecology RAW Data Dryad Repository 02112017Data file was entered in Microsoft Excel. Different tabs contain datasheets. (Data plant and insect variables per community; Plant and consumption variables per individual within communities; Environmental variables for multivariate analyses; Species variables for biomass for multivariate analyses; Species variables for consumption for multivariate analyses; PCA scores fungal diversity; PCA scores bacterial diversity.Heinen et al RAW Data Dryad Repository 02112017.xlsx

Country
Netherlands
Keywords

soil conditioning, Agrostis capillaris, Crepis capillaris, plant-soil feedback, Geranium molle, Verwerkte data, Mamestra, herbivore, Alopecurus pratensis, Festuca ovina, Gnaphalium sylvaticum, Holcus lanatus, Briza media, Plantago lanceolata, Taraxacum officinale, root size, Plant Community, Processed data, Soil legacy effects, Myosotis arvensis, Anthoxanthum odoratum

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selected citations
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This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
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