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首页> 外文期刊>The Journal of Ecology >Using plant functional traits to understand the landscape distribution of multiple ecosystem services
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Using plant functional traits to understand the landscape distribution of multiple ecosystem services

机译:利用植物功能性状了解多种生态系统服务的景观分布

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P>1. Spatially explicit understanding of the delivery of multiple ecosystem services (ES) from global to local scales is currently limited. New studies analysing the simultaneous provision of multiple services at landscape scale should aid the understanding of multiple ES delivery and trade-offs to support policy, management and land planning.2. Here, we propose a new approach for the analysis, mapping and understanding of multiple ES delivery in landscapes. Spatially explicit single ES models based on plant traits and abiotic characteristics are combined to identify 'hot' and 'cold' spots of multiple ES delivery, and the land use and biotic determinants of such distributions. We demonstrate the value of this trait-based approach as compared to a pure land-use approach for a pastoral landscape from the central French Alps, and highlight how it improves understanding of ecological constraints to, and opportunities for, the delivery of multiple services.3. Vegetative height and leaf traits such as leaf dry matter content were response traits strongly influenced by land use and abiotic environment, with follow-on effects on several ecosystem properties, and could therefore be used as functional markers of ES.4. Patterns of association among ES were related to the dominant traits underlying different ecosystem properties. The functional decoupling between height and leaf traits provided alternative pathways for high agronomic value, as well as determining hot and cold spots of ES. Traditional land uses such as organic fertilization and mowing or altitude summer grazing were also linked with ES hot spots, because functional characteristics supporting fodder production and quality are compatible with species and functional diversity.5. Synthesis. Analyses of ES using plant functional variation across landscapes are a powerful approach to understanding the fundamental ecological mechanisms underlying ES provision, and trade-offs or synergies among services. Sustainable management of species and functionally diverse grassland could simultaneously aim at conserving biodiversity and locally important ES by taking advantage of correlations and trade-offs among different plant functional traits.
机译:P> 1。目前,对从全球到本地范围的多种生态系统服务(ES)的空间明确了解有限。分析景观规模上同时提供多种服务的新研究应有助于理解多种ES交付和权衡,以支持政策,管理和土地规划。2。在这里,我们提出了一种新的方法来分析,映射和理解景观中的多个ES交付。结合基于植物性状和非生物特征的空间明确的单一ES模型,以确定多次ES输送的“热点”和“寒冷”点,以及此类分布的土地利用和生物决定因素。我们证明了这种基于特征的方法与纯法国土地用于法国阿尔卑斯山中部牧区的土地利用方法相比的价值,并强调了它如何增进人们对提供多种服务的生态约束和机会的理解。 3。营养高度和叶片性状(如叶片干物质含量)是受土地利用和非生物环境强烈影响的响应性状,对几种生态系统特性产生后续影响,因此可以用作ES的功能标记。4。 ES之间的关联模式与不同生态系统特性下的显性特征有关。高度和叶片性状之间的功能性脱钩为获得高农艺价值以及确定ES的热点和冷点提供了替代途径。传统的土地利用,如有机肥,割草或夏季放牧等,也与ES热点相关,因为支持饲料生产和品质的功能特征与物种和功能多样性相适应。5。合成。使用跨景观的植物功能变异进行的生态系统分析是了解生态系统提供的基本生态机制以及服务之间权衡或协同作用的有力方法。通过利用不同植物功能性状之间的相关性和权衡,对物种和功能多样的草原进行可持续管理可以同时旨在保护生物多样性和当地重要的生态系统。

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