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Sustainable pest regulation in agricultural landscapes: a review on landscape composition, biodiversity and natural pest control

Proceedings of the Royal Society B Biological Sciences · 2006 · Vol. 273(1595) · pp. 1715–1727

Abstract

Agricultural intensification has resulted in a simplification of agricultural landscapes by the expansion of agricultural land, enlargement of field size and removal of non-crop habitat. These changes are considered to be an important cause of the rapid decline in farmland biodiversity, with the remaining biodiversity concentrated in field edges and non-crop habitats. The simplification of landscape composition and the decline of biodiversity may affect the functioning of natural pest control because non-crop habitats provide requisites for a broad spectrum of natural enemies, and the exchange of natural enemies between crop and non-crop habitats is likely to be diminished in landscapes dominated by arable cropland. In this review, we test the hypothesis that natural pest control is enhanced in complex patchy landscapes with a high proportion of non-crop habitats as compared to simple large-scale landscapes with little associated non-crop habitat. In 74% and 45% of the studies reviewed, respectively, natural enemy populations were higher and pest pressure lower in complex landscapes versus simple landscapes. Landscape-driven pest suppression may result in lower crop injury, although this has rarely been documented. Enhanced natural enemy activity was associated with herbaceous habitats in 80% of the cases (e.g. fallows, field margins), and somewhat less often with wooded habitats (71%) and landscape patchiness (70%). The similar contributions of these landscape factors suggest that all are equally important in enhancing natural enemy populations. We conclude that diversified landscapes hold most potential for the conservation of biodiversity and sustaining the pest control function.

Insect-Plant Interactions and ControlPlant and animal studiesEcology and Vegetation Dynamics StudiesArable landBiodiversityHabitatPEST analysisAgroforestryAgricultureEcologyLandscape ecologyGeographyBiology

MeSH terms

Conservation of Natural ResourcesEuropeNorth AmericaPest Control, BiologicalCrops, AgriculturalBiodiversity

Funding

  • Deutsche Forschungsgemeinschaft
  • Bundesministerium für Bildung und Forschung
  • Ministerie van Landbouw, Natuur en Voedselkwaliteit
Citations
1,942
FWCI
43.69
field-weighted impact
References
130
Percentile
100%
vs. same field & year
Citations per year
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