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More than 75 percent decline over 27 years in total flying insect biomass in protected areas

PLoS ONE · 2017 · Vol. 12(10) · pp. e0185809–e0185809
Caspar A. HallmannMartin SorgEelke JongejansH. SiepelNick HoflandHeinz SchwanWerner StenmansAndreas MüllerHubert SumserThomas HörrenDave GoulsonHans de Kroon

Abstract

Global declines in insects have sparked wide interest among scientists, politicians, and the general public. Loss of insect diversity and abundance is expected to provoke cascading effects on food webs and to jeopardize ecosystem services. Our understanding of the extent and underlying causes of this decline is based on the abundance of single species or taxonomic groups only, rather than changes in insect biomass which is more relevant for ecological functioning. Here, we used a standardized protocol to measure total insect biomass using Malaise traps, deployed over 27 years in 63 nature protection areas in Germany (96 unique location-year combinations) to infer on the status and trend of local entomofauna. Our analysis estimates a seasonal decline of 76%, and mid-summer decline of 82% in flying insect biomass over the 27 years of study. We show that this decline is apparent regardless of habitat type, while changes in weather, land use, and habitat characteristics cannot explain this overall decline. This yet unrecognized loss of insect biomass must be taken into account in evaluating declines in abundance of species depending on insects as a food source, and ecosystem functioning in the European landscape.

Plant and animal studiesEcology and Vegetation Dynamics StudiesSpecies Distribution and Climate ChangeAbundance (ecology)EcologyHabitatBiomass (ecology)EcosystemBiodiversityInsectEcosystem servicesBiologyClimate change

MeSH terms

AnimalsConservation of Natural ResourcesFlight, AnimalInsectaModels, TheoreticalSeasonsTime FactorsSample SizeBiomass

Funding

  • Triodos Foundation
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • European Agricultural Fund for Rural Development
Citations
3,345
FWCI
477.53
field-weighted impact
References
57
Percentile
100%
vs. same field & year
Citations per year
References
Global pollinator declines: trends, impacts and drivers
Trends in Ecology & Evolution · 2010 · 6,184 citations
Thin Plate Regression Splines
Journal of the Royal Statistical Society Series B (Statistical Methodology) · 2003 · 2,440 citations
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