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Analyzing the relative importance of habitat quantity and quality for boosting pollinator populations in agricultural landscapes

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

To increase pollinator populations, international policy targets minimum levels of seminatural habitat cover, but it is unknown whether improving the quality of existing habitats could bring similar benefits without the need of reducing cropland area. Using data we collected in 26 Italian agricultural landscapes during the entire flying season, we explored the relative importance of habitat quantity (seminatural habitat cover) and quality (flower availability) on pollinator densities in seminatural habitats. We obtained transect-based counts and estimated the effect of habitat quantity (proportion of seminatural habitat) and quality (flower cover and richness) on wild bee and hoverfly densities. We used the relationships revealed in the data to simulate pollinator population sizes in landscapes with varying habitat quantity and quality. Wild bee densities were only related to flower availability, whereas hoverfly densities were additionally related to seminatural habitat cover. We found that in complex agricultural landscapes (above 15% seminatural habitat cover), improving habitat quality increased pollinator populations more effectively than increasing habitat quantity. However, increasing habitat quantity was by far the most effective approach for boosting pollinator populations in simple landscapes.
Original languageEnglish
Article numbere14317
Pages (from-to)1-10
Number of pages10
JournalConservation Biology
Volume39
Issue number1
Early online date25 Jun 2024
DOIs
Publication statusPublished - Feb 2025
Externally publishedYes

Funding

We are grateful for the field assistance of D. Heupink and W. Vertommen, as well as the logistical assistance of Nunhems Netherlands BV (BASF). T.P.M.F. and C.G. were supported by the research program NWO‐Green, which is jointly funded by the Netherlands Organization for Scientific Research (NWO) and Nunhems Netherlands BV (BASF) under project number 870.15.030. Nunhems Netherlands BV (BASF) has no influence on the scientific output or on the conclusions and recommendations. G.A.B. and D.K. are supported by the European Union's Horizon 2020 research and innovation program under grant agreement 862480, SHOWCASE project (SHOWCASing synergies between agriculture, biodiversity and Ecosystem services to help farmers capitalizing on native biodiversity; https://showcase‐project.eu/ ). We are grateful for the field assistance of D. Heupink and W. Vertommen, as well as the logistical assistance of Nunhems Netherlands BV (BASF). T.P.M.F. and C.G. were supported by the research program NWO-Green, which is jointly funded by the Netherlands Organization for Scientific Research (NWO) and Nunhems Netherlands BV (BASF) under project number 870.15.030. Nunhems Netherlands BV (BASF) has no influence on the scientific output or on the conclusions and recommendations. G.A.B. and D.K. are supported by the European Union's Horizon 2020 research and innovation program under grant agreement 862480, SHOWCASE project (SHOWCASing synergies between agriculture, biodiversity and Ecosystem services to help farmers capitalizing on native biodiversity; https://showcase-project.eu/).

FundersFunder number
BASF
SHOWCASing synergies between agriculture, biodiversity
Nunhems Netherlands BV
Horizon 2020
NWO870.15.030
Horizon 2020 Framework Programme862480

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