Abstract

Farmland vegetative strips are a proven source of support for ecosystem services and are globally used to mitigate effects of agricultural intensification. However, increasing pressures on agricultural land require increases in their functionality, such as supporting multiple ecosystem services concurrently.The plant species sown in a vegetative strip seed mix determine the establishment, plant community, and ecosystem services that are supported. Currently, there is no clearly defined or structured method to select plant species for multifunctional vegetative strips.Plant traits determine how plants support ecosystem services. Also, the establishment and persistence of plant communities is influenced by key internal and external factors. We propose a novel, evidence‐informed method of multifunctional vegetative strip design based on these essential traits and factors.This study had three distinct stages. The first identified plant traits that support water quality protection, pollinators and/or crop pest natural enemies, using existing research evidence. We then identified key factors affecting plant community establishment and persistence. Finally, we applied these standardized methods to design a multifunctional vegetative strip for a specific case study (UK lowland farmland).Key plant traits identified, included floral display size, flower color, nectar content, leaf surface area, leaf trichome density, percentage fine roots, root length, rooting depth, and root density. Key internal and external establishment factors included life history, native status, distribution, established competitive strategy, associated floristic diversity, flowering time and duration, and preferred soil type and pH. In the United Kingdom case study, we used five different plant traits and all of the identified factors to design a seed mix for a multifunctional vegetative strip.We present a transferable method of vegetative strip design that can be adapted for other ecosystem services and climates. It provides landowners and advisors with an evidence‐informed approach to increase field margin functionality while supporting farmland biodiversity. OPEN RESEARCH BADGES This article has earned an Open Data Badge for making publicly available the digitally‐shareable data necessary to reproduce the reported results. The data is available at https://doi.org/10.5061/dryad.8t52n38.

Highlights

  • Agricultural land use covers 37.4% of global land area as of 2015 (FAO, 2018)

  • Recent research has shown that achieving efficient agricultural production requires regulating ecosystem services, including pollination and biological control, which support the provisioning service of food production (Aizen, Garibaldi, Cunningham, & Klein, 2009; Blitzer, Gibbs, Park, & Danforth, 2016; Zavaleta, Pasari, Hulvey, & Tilman, 2010)

  • In the pursuance of designing a vegetative strip to support multiple ecosystem services, we propose a novel, evidence‐informed method which utilizes plant traits and key establishment factors, which can be applied to a wide range of farmland environments within temperate climates

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Summary

Introduction

Agricultural land use covers 37.4% of global land area as of 2015 (FAO, 2018). Farming it effectively for food production is vital for a globally expanding human population (Godfray et al, 2010; UN Population Division, 2018). Wildlife declines have led to a reduction in the support for these services (Biesmeijer et al, 2006; Brown & Paxton, 2009; Carvell, Meek, Pywell, & Nowakowski, 2004; Dabrowski, Peall, Reinecke, Liess, & Schulz Runoff, 2002; Davies, 2000; Garratt et al, 2013; Gevao, Semple, & Jones, 2000; Kremen, Williams, & Thorp, 2002; Rusch et al, 2016; Stanley, Gunning, & Stout, 2013; Williams & Osborne, 2009; Winfree, Aguilar, Vázquez, LeBuhn, & Aizen, 2009). This is of particular importance in the United Kingdom as just 35% of rivers are classified as “Good” according as of 2016 (Priestley & Barton, 2018)

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