...
首页> 外文期刊>The Journal of Applied Ecology >Identifying plant mixes for multiple ecosystem service provision in agricultural systems using ecological networks
【24h】

Identifying plant mixes for multiple ecosystem service provision in agricultural systems using ecological networks

机译:确定植物混合多个生态系统服务条款在农业系统使用生态网络

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

1. Managing agricultural environments in a way that maximises the provision of multiple ecosystem services is a significant challenge in the development of sustainable and secure food systems. Advances in network ecology provide a way forward, particularly in arable landscapes, as they incorporate mutualistic and antagonistic interactions associated with crop production. 2. Here, we present an approach to identify mixes of non-crop plant species that provide multiple ecosystem services while minimising disservices. Genetic algorithms were applied to the Norwood Farm ecological network-a comprehensive dataset of antagonistic and mutualistic species interactions on an organic farm in the United Kingdom. We aimed to show how network analyses can be used to select plants supporting a high diversity of insect pollinators and parasitoids of insect pests, but low diversity of herbivores. Further to this, we wanted to understand the trade-offs in ecosystem service provision associated with conventional management practices that focus on individual ecosystem services. 3. We show that multilayer network analyses can be used to identify mixes of plant species that maximise the species richness of pollinators and parasitoids (natural enemies of insect pests), while minimising the species richness of herbivores. 4. Trade-offs between ecosystem processes were apparent with several plant species associated with a high species richness of both positive (pollinators and parasitoids) and negative (herbivores) functional taxonomic groups. As a result, optimal plant species mixes for individual ecosystem services were different from the mix simultaneously maximising pollination and parasitism of pest insects, while minimising herbivory. 5. Synthesis and applications. Plant mixes designed solely for maximising pollinator species richness are not optimal for the provision of other ecosystem services and disservices (e.g. parasitism of insect pests and herbivory). The method presented her
机译:1. 最大化提供多个生态系统服务是一个重大的挑战可持续的发展和安全的食品系统。前进的道路,尤其是耕地景观,因为他们把互惠和敌对的相互作用与作物生产。在这里,我们提出一个方法来识别的混合水分散性提供多种的植物物种生态系统服务而将伤害降至最低。遗传算法被应用于诺伍德农业生态网络综合数据集敌对的和互惠的物种相互作用在一个有机农场在美国王国。可以用来选择植物支持高吗昆虫传粉者和拟寄生物的多样性害虫,但低食草动物的多样性。进一步,我们想了解在生态系统服务提供的权衡与传统的管理实践专注于个人的生态系统服务。我们表明,多层网络分析用于识别混合的植物物种传粉昆虫的物种丰富度和最大化拟寄生物(害虫的天敌),同时尽可能减少的物种丰富度食草动物。过程明显有几个工厂物种与物种丰富度很高正面(传粉者和拟寄生物)和负(食草动物)功能分类组。对个人是不同的生态系统服务从混合同时最大化授粉和寄生的昆虫,害虫最小化食草性。应用程序。最大化授粉物种丰富度最优的其他生态系统服务和伤害(如寄生害虫和食草性)。她的

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号