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A simulation study of synergies and tradeoffs between multiple ecosystem services in apple orchards

机译:苹果园中多种生态系统服务之间的协同与权衡的仿真研究

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摘要

In this study, we analyzed the patterns of relationships between multiple ecosystem services in apple orchards by considering the cascade that links agricultural practices to ecosystem functions and then to ecosystem services. Five major ecosystem services were considered: fruit production, soil nitrogen availability, climate regulation, water cycle maintenance and regulation, including water quality, and pest and disease control. We derived indicators of ecosystem functions and of ecosystem services from model simulations of orchards driven by virtual cropping systems combining various modalities of nitrogen fertilization, irrigation, and pest control. We deciphered the links between practices and ecosystem functions and between those functions and ecosystem services and clustered cropping systems according to their ecosystem service supply. Noticeable synergies were found between yield, fruit mass and sequestrated carbon. The contribution of carbon allocation to fruit in sequestrated carbon was considerable. Nitrogen absorption, impacted by fertilization and irrigation, was a major driver of these relationships. The typology built from these virtual cropping systems clearly followed a gradient of provisioning and regulating ecosystem services. Five cropping systems optimized the compromise between provisioning and regulating services and were essentially characterized by organo-mineral fertilization, comfort irrigation, apple scab-resistant cultivars and exclusion nets against codling moth.Our approach could contribute to the design of cropping systems that would provide an acceptable compromise between multiple ecosystem services in orchards.
机译:在这项研究中,我们通过考虑将农业实践与生态系统功能再与生态系统服务联系起来的级联,分析了苹果园中多种生态系统服务之间的关系模式。考虑了五种主要的生态系统服务:水果生产,土壤氮素供应,气候调节,水循环维持和调节,包括水质以及病虫害防治。我们通过结合虚拟施肥,灌溉和病虫害防治的各种模式的虚拟种植系统驱动的果园模型模拟得出了生态系统功能和生态系统服务的指标。我们根据生态系统服务的提供情况,对实践与生态系统功能之间以及这些功能与生态系统服务之间的联系以及集群的种植系统进行了解密。在产量,果实质量和固碳之间发现了明显的协同作用。碳的分配对水果中固碳的贡献很大。受施肥和灌溉影响的氮吸收是这些关系的主要驱动力。从这些虚拟种植系统构建的类型显然遵循了调配和调节生态系统服务的梯度。五个耕作系统优化了供应和监管服务之间的折衷,其主要特点是有机矿物施肥,舒适灌溉,抗苹果sc病的栽培品种和防止苹果d蛾的隔离网。我们的方法可有助于设计可提供果园中多种生态系统服务之间的可接受折衷。

著录项

  • 来源
    《Journal of Environmental Management》 |2019年第15期|1-16|共16页
  • 作者单位

    INRA, Ctr Rech PACA, UR PSH 1115 Plantes & Syst Cultures Horticole, 228 Route Aerodrome,Domaine St Paul,Site Agroparc, F-84914 Avignon 9, France|CTIFL Ctr St Remy, Route Molleges, F-13210 St Remy de Provence, France;

    INRA, Ctr Rech PACA, UR PSH 1115 Plantes & Syst Cultures Horticole, 228 Route Aerodrome,Domaine St Paul,Site Agroparc, F-84914 Avignon 9, France;

    INRA, Ctr Rech PACA, UR PSH 1115 Plantes & Syst Cultures Horticole, 228 Route Aerodrome,Domaine St Paul,Site Agroparc, F-84914 Avignon 9, France;

    CTIFL Ctr Lanxade, 8 Route Nebouts, F-24130 Prigonrieux, France;

    INRA, Ctr Rech PACA, UR PSH 1115 Plantes & Syst Cultures Horticole, 228 Route Aerodrome,Domaine St Paul,Site Agroparc, F-84914 Avignon 9, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Apple orchards; Multiple ecosystem services; Cropping systems; Modelization; STICS; IPSIM;

    机译:苹果园;多种生态系统服务;耕作系统;模型化;STICKS;IPSUM;

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