Flower strips are a fundamental part of agri-environment schemes in the Common Agricultural Policy (CAP). Although vegetation is central for many arthropod groups, a few studies have evaluated the effects of flower strip structural and functional attributes on arthropod communities. In this study, we explored the relationship between flower strip attributes and the abundance of different arthropod functional groups in annual flower strips located in an organic apple orchard. We surveyed plant and arthropod communities in 30 1 m x 6 m plots. In each plot, we collected data on species composition and vegetation structure (e.g., total cover, density, number of floral displays). For each plant species, we also retrieved data on leaf palatability and nutritional value. Arthropods were collected using sweep netting technique. Structural and functional attributes of the flower strip revealed a crucial role in regulating arthropod abundance, which however depended on the specific arthropod functional group. We identified three main attributes (plant species richness, composition, and vegetation density) of flower strips that should be considered when implementing multifunctional flower strips. Specifically, plant species richness to ensure complementarity of resources and niches, plant species composition to ensure complementary floral resources, and vegetation density to ensure sheltering microhabitats and suitable microclimatic conditions and to increase the density of floral resources. Our results suggest that by considering structural and functional attributes of flower strips, it is possible to design multifunctional flower strips with greater effectiveness as measures for ecological intensification.

Ecological intensification: multifunctional flower strips support beneficial arthropods in an organic apple orchard / Favarin, Sebastiano; Sommaggio, Daniele; Fantinato, Edy; Masiero, Maddalena; Buffa, Gabriella. - In: PLANT ECOLOGY. - ISSN 1385-0237. - 225:5(2024), pp. 499-509. [10.1007/s11258-024-01402-z]

Ecological intensification: multifunctional flower strips support beneficial arthropods in an organic apple orchard

Sommaggio, Daniele;
2024

Abstract

Flower strips are a fundamental part of agri-environment schemes in the Common Agricultural Policy (CAP). Although vegetation is central for many arthropod groups, a few studies have evaluated the effects of flower strip structural and functional attributes on arthropod communities. In this study, we explored the relationship between flower strip attributes and the abundance of different arthropod functional groups in annual flower strips located in an organic apple orchard. We surveyed plant and arthropod communities in 30 1 m x 6 m plots. In each plot, we collected data on species composition and vegetation structure (e.g., total cover, density, number of floral displays). For each plant species, we also retrieved data on leaf palatability and nutritional value. Arthropods were collected using sweep netting technique. Structural and functional attributes of the flower strip revealed a crucial role in regulating arthropod abundance, which however depended on the specific arthropod functional group. We identified three main attributes (plant species richness, composition, and vegetation density) of flower strips that should be considered when implementing multifunctional flower strips. Specifically, plant species richness to ensure complementarity of resources and niches, plant species composition to ensure complementary floral resources, and vegetation density to ensure sheltering microhabitats and suitable microclimatic conditions and to increase the density of floral resources. Our results suggest that by considering structural and functional attributes of flower strips, it is possible to design multifunctional flower strips with greater effectiveness as measures for ecological intensification.
2024
225
5
499
509
Ecological intensification: multifunctional flower strips support beneficial arthropods in an organic apple orchard / Favarin, Sebastiano; Sommaggio, Daniele; Fantinato, Edy; Masiero, Maddalena; Buffa, Gabriella. - In: PLANT ECOLOGY. - ISSN 1385-0237. - 225:5(2024), pp. 499-509. [10.1007/s11258-024-01402-z]
Favarin, Sebastiano; Sommaggio, Daniele; Fantinato, Edy; Masiero, Maddalena; Buffa, Gabriella
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1343446
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