Effects of agricultural landscape heterogeneity on pollinator visitation rates in Mediterranean oilseed rape

dc.contributor.author Neira, Pablo ca
dc.contributor.author Blanco Moreno, José Manuel ca
dc.contributor.author Olave, Magdalena ca
dc.contributor.author Caballero-López, Berta ca
dc.contributor.author Sans, F. Xavier ca
dc.contributor.other Consorci del Museu de Ciències Naturals de Barcelona ca
dc.coverage.spatial Mediterrània (Regió) ca
dc.coverage.spatial Mediterrània (Regió) en
dc.coverage.spatial Mediterrània (Regió) es
dc.date.accessioned 2024-04-03T13:14:23Z
dc.date.available 2024-04-03T13:14:23Z
dc.date.issued 2024-01-11
dc.description.abstract Agricultural intensification, by changing land use and modifying the yearly configuration and composition through crop sequences, affects the abundance and diversity of pollinators and, consequently, pollination. This study aims to assess the impact of the characteristics of agricultural landscapes on pollinator abundance in the Mediterranean region. We studied the response of three major wild pollinator groups (hoverflies, bumblebees, and wild bees) to four landscape characteristics: three related to composition, namely, equivalent crop diversity in the sampling year (eRg), previous year equivalent crop diversity (eRgP) and percentage of seminatural habitats (SNH), and one related to landscape configuration, namely, mean field size (MFS). For this evaluation, we selected twenty-two oilseed rape fields (OSRs) differing in surrounding landscape characteristics within a 1-km radius. Multimodel inference indicates that landscape variables affect pollinator groups differently. The percentage of SNH was the most important variable having a positive influence on the abundance of bumblebees, while eRgP and MFS were found to be important for the abundance of wild bees and hoverflies. These data allow us to prioritize actions aimed at specific groups of pollinators, improve agricultural landscape schemes, promote the conservation of wild pollinators, promote crop diversity at the landscape scale and increase the extent of seminatural areas. ca
dc.description.abstract Agricultural intensification, by changing land use and modifying the yearly configuration and composition through crop sequences, affects the abundance and diversity of pollinators and, consequently, pollination. This study aims to assess the impact of the characteristics of agricultural landscapes on pollinator abundance in the Mediterranean region. We studied the response of three major wild pollinator groups (hoverflies, bumblebees, and wild bees) to four landscape characteristics: three related to composition, namely, equivalent crop diversity in the sampling year (eRg), previous year equivalent crop diversity (eRgP) and percentage of seminatural habitats (SNH), and one related to landscape configuration, namely, mean field size (MFS). For this evaluation, we selected twenty-two oilseed rape fields (OSRs) differing in surrounding landscape characteristics within a 1-km radius. Multimodel inference indicates that landscape variables affect pollinator groups differently. The percentage of SNH was the most important variable having a positive influence on the abundance of bumblebees, while eRgP and MFS were found to be important for the abundance of wild bees and hoverflies. These data allow us to prioritize actions aimed at specific groups of pollinators, improve agricultural landscape schemes, promote the conservation of wild pollinators, promote crop diversity at the landscape scale and increase the extent of seminatural areas. en
dc.description.abstract Agricultural intensification, by changing land use and modifying the yearly configuration and composition through crop sequences, affects the abundance and diversity of pollinators and, consequently, pollination. This study aims to assess the impact of the characteristics of agricultural landscapes on pollinator abundance in the Mediterranean region. We studied the response of three major wild pollinator groups (hoverflies, bumblebees, and wild bees) to four landscape characteristics: three related to composition, namely, equivalent crop diversity in the sampling year (eRg), previous year equivalent crop diversity (eRgP) and percentage of seminatural habitats (SNH), and one related to landscape configuration, namely, mean field size (MFS). For this evaluation, we selected twenty-two oilseed rape fields (OSRs) differing in surrounding landscape characteristics within a 1-km radius. Multimodel inference indicates that landscape variables affect pollinator groups differently. The percentage of SNH was the most important variable having a positive influence on the abundance of bumblebees, while eRgP and MFS were found to be important for the abundance of wild bees and hoverflies. These data allow us to prioritize actions aimed at specific groups of pollinators, improve agricultural landscape schemes, promote the conservation of wild pollinators, promote crop diversity at the landscape scale and increase the extent of seminatural areas. es
dc.format.extent 9 p. ca
dc.identifier http://hdl.handle.net/2072/537485
dc.identifier.entitat consorcis ca
dc.identifier.uri http://hdl.handle.net/11703/134650
dc.language eng ca
dc.provenance Recercat (Dipòsit de la Recerca de Catalunya) ca
dc.rights CC-BY-NC ca
dc.rights.notes © 2023 The Authors. Published by Elsevier B.V. ca
dc.rights.uri https://creativecommons.org/licenses/by-nc/4.0/deed.ca ca
dc.subject Insectes pol·linitzadors ca
dc.subject Ecosistemes ca
dc.subject Colza ca
dc.subject Insect pollinators en
dc.subject Biotic communities en
dc.subject Rape (Plant) en
dc.subject Insectos polinizadores es
dc.subject Ecosistemas es
dc.subject Colza es
dc.subject.category Ciència i tecnologia ca
dc.subject.forma articles ca
dc.title Effects of agricultural landscape heterogeneity on pollinator visitation rates in Mediterranean oilseed rape ca
dc.type text ca
dc.type.driver info:eu-repo/semantics/article ca
dc.type.driver info:eu-repo/semantics/publishedVersion ca
metadadalocal.dependencia 8008920

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