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The contribution of spatial mass effects to plant diversity in arable fields
by
Metcalfe, Helen
, Hassall, Kirsty L.
, Boinot, Sébastien
, Storkey, Jonathan
in
Abundance
/ agricultural landscape
/ Agricultural management
/ Agrochemicals
/ arable fields
/ Arable land
/ Biodiversity
/ Birds
/ Business competition
/ Competition
/ Conservation
/ conservation headlands
/ Cultivation
/ data collection
/ Dispersal
/ Dispersion
/ Ecological effects
/ Ecological monitoring
/ Ecosystem services
/ edge effects
/ Fertilizers
/ fidelity score
/ field edge
/ Flora
/ Habitats
/ Headlands
/ Herbicides
/ Invertebrates
/ Landscape
/ landscapes
/ Life Sciences
/ Plant communities
/ Plant diversity
/ Plant species
/ Reduction
/ RESEARCH ARTICLE
/ Risk reduction
/ selection pressure
/ spatial mass effects
/ Species diversity
/ Species richness
/ United Kingdom
/ Vegetal Biology
/ Weeds
/ Wildlife conservation
2019
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The contribution of spatial mass effects to plant diversity in arable fields
by
Metcalfe, Helen
, Hassall, Kirsty L.
, Boinot, Sébastien
, Storkey, Jonathan
in
Abundance
/ agricultural landscape
/ Agricultural management
/ Agrochemicals
/ arable fields
/ Arable land
/ Biodiversity
/ Birds
/ Business competition
/ Competition
/ Conservation
/ conservation headlands
/ Cultivation
/ data collection
/ Dispersal
/ Dispersion
/ Ecological effects
/ Ecological monitoring
/ Ecosystem services
/ edge effects
/ Fertilizers
/ fidelity score
/ field edge
/ Flora
/ Habitats
/ Headlands
/ Herbicides
/ Invertebrates
/ Landscape
/ landscapes
/ Life Sciences
/ Plant communities
/ Plant diversity
/ Plant species
/ Reduction
/ RESEARCH ARTICLE
/ Risk reduction
/ selection pressure
/ spatial mass effects
/ Species diversity
/ Species richness
/ United Kingdom
/ Vegetal Biology
/ Weeds
/ Wildlife conservation
2019
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The contribution of spatial mass effects to plant diversity in arable fields
by
Metcalfe, Helen
, Hassall, Kirsty L.
, Boinot, Sébastien
, Storkey, Jonathan
in
Abundance
/ agricultural landscape
/ Agricultural management
/ Agrochemicals
/ arable fields
/ Arable land
/ Biodiversity
/ Birds
/ Business competition
/ Competition
/ Conservation
/ conservation headlands
/ Cultivation
/ data collection
/ Dispersal
/ Dispersion
/ Ecological effects
/ Ecological monitoring
/ Ecosystem services
/ edge effects
/ Fertilizers
/ fidelity score
/ field edge
/ Flora
/ Habitats
/ Headlands
/ Herbicides
/ Invertebrates
/ Landscape
/ landscapes
/ Life Sciences
/ Plant communities
/ Plant diversity
/ Plant species
/ Reduction
/ RESEARCH ARTICLE
/ Risk reduction
/ selection pressure
/ spatial mass effects
/ Species diversity
/ Species richness
/ United Kingdom
/ Vegetal Biology
/ Weeds
/ Wildlife conservation
2019
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The contribution of spatial mass effects to plant diversity in arable fields
Journal Article
The contribution of spatial mass effects to plant diversity in arable fields
2019
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Overview
In arable fields, plant species richness consistently increases at field edges. This potentially makes the field edge an important habitat for the conservation of the ruderal arable flora (or ‘weeds’) and the invertebrates and birds it supports. Increased diversity and abundance of weeds in crop edges could be owing to either a reduction in agricultural inputs towards the field edge and/or spatial mass effects associated with dispersal from the surrounding landscape. We contend that the diversity of weed species in an arable field is a combination of resident species, that can persist under the intense selection pressure of regular cultivation and agrochemical inputs (typically more ruderal species), and transient species that rely on regular dispersal from neighbouring habitats (characterised by a more ‘competitive’ ecological strategy). We analysed a large dataset of conventionally managed arable fields in the UK to study the effect of the immediate landscape on in‐field plant diversity and abundance and to quantify the contribution of spatial mass effects to plant diversity in arable fields in the context of the ecological strategy of the resulting community. We demonstrated that the decline in diversity with distance into an arable field is highly dependent on the immediate landscape, indicating the important role of spatial mass effects in explaining the increased species richness at field edges in conventionally managed fields. We observed an increase in the proportion of typical arable weeds away from the field edge towards the centre. This increase was dependent on the immediate landscape and was associated with a higher proportion of more competitive species, with a lower fidelity to arable habitats, at the field edge. Synthesis and applications. Conserving the ruderal arable plant community, and the invertebrates and birds that use it as a resource, in conventionally managed arable fields typically relies on the targeted reduction of fertilisers and herbicides in so‐called ‘conservation headlands’. The success of these options will depend on the neighbouring habitat and boundary. They should be placed along margins where the potential for ingress of competitive species, that may become dominant in the absence of herbicides, is limited. This will enhance ecosystem services delivered by the ruderal flora and reduce the risk of competitive species occurring in the crop. Conserving the ruderal arable plant community, and the invertebrates and birds that use it as a resource, in conventionally managed arable fields typically relies on the targeted reduction of fertilisers and herbicides in so‐called ‘conservation headlands’. The success of these options will depend on the neighbouring habitat and boundary. They should be placed along margins where the potential for ingress of competitive species, that may become dominant in the absence of herbicides, is limited. This will enhance ecosystem services delivered by the ruderal flora and reduce the risk of competitive species occurring in the crop.
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