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A trait‐based approach to plant species selection to increase functionality of farmland vegetative strips

机译:一种基于性状的植物物种选择方法,以增加农田植被带的功能

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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 .
机译:农田植物带是一种公认​​的支持生态系统服务的来源,并且在全球范围内被用于减轻农业集约化的影响。但是,对农业土地的压力越来越大,要求其功能增加,例如同时支持多种生态系统服务。营养带状种子混合物中播种的植物物种决定了所支持的设施,植物群落和生态系统服务。当前,没有明确定义或结构化的方法来选择多功能营养条的植物种类。植物特征决定植物如何支持生态系统服务。此外,植物群落的建立和持久性还受到关键的内部和外部因素的影响。我们基于这些基本特征和因素,提出了一种多功能的营养条设计的新颖,循证的方法。这项研究分为三个不同的阶段。首先利用现有研究证据确定了支持水质保护,传粉媒介和/或农作物有害生物天敌的植物性状。然后,我们确定了影响植物群落建立和持久性的关键因素。最后,我们应用这些标准化方法为特定案例研究(英国低地农田)设计了多功能营养条。确定的关键植物性状包括花序大小,花色,花蜜含量,叶表面积,叶毛状体密度,细根百分比,根长度,生根深度和根密度。内部和外部建立的关键因素包括生活史,自然状态,分布,既定的竞争策略,相关的植物多样性,开花时间和持续时间以及首选的土壤类型和pH。在英国的案例研究中,我们使用了五种不同的植物性状和所有确定的因素来设计多功能营养带的种子混合物。我们提出了一种可移植的植被带设计方法,该方法可适用于其他生态系统服务和气候。它为土地所有者和顾问提供了一种基于证据的方法,可以在支持农田生物多样性的同时增加田间边际功能。开放研究徽章本文因公开提供了再现报告结果所必需的数字共享数据而赢得了“开放数据徽章”。数据可在https://doi.org/10.5061/dryad.8t52n38获得。

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