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Managing agricultural landscapes for favouring ecosystem services provided by biodiversity: a spatially explicit model of crop rotations in the GAMA simulation platform

机译:管理农业景观以支持生物多样性提供的生态系统服务:GAMA模拟平台中作物轮换的空间明确模型

摘要

The need to reduce the use of chemical inputs in agricultural ecosystems requires studying integrated ecological processes and developing new tools helping to manage them. In particular, designing landscape management strategies is a new way to improve the efficiency of services provided by biodiversity as biological control or pollination. Individual-based models are useful to better understand how pests and predatory or pollinator insects interact with agricultural landscapes and to study the potential effects of habitat management strategies. We developed an individual-based model simulating the dynamics of an agricultural landscape from GIS data, taking into account crop rotations and crop phenology which have an important impact on the life cycles of populations of insects. The spatiotemporal stochasticity is simulated using typical land-cover rotations applied by farmers and crop phenology directly set by the user according to his needs. Spatiotemporal patterns are calculated from an initial real agricultural landscape and plausible land-cover rotations. We used the Gama simulation platform which has strong built-in functions for spatial data treatment and aggregated population dynamics. The landscape model was applied to a case-study located in a long term social ecological research site in southwestern France. We describe the characteristics of the model and present some outputs in terms of visualization, spatio-temporal crop dynamics and possible uses in relation with ecological studies. This model is built to be applicable to any agricultural landscape and to be linked to almost any population dynamics.
机译:减少在农业生态系统中使用化学投入物的需求需要研究综合的生态过程并开发有助于管理这些过程的新工具。特别是,设计景观管理策略是提高生物多样性作为生物控制或授粉提供服务的效率的新途径。基于个体的模型有助于更好地了解有害生物和掠食性昆虫或传粉昆虫与农业景观的相互作用,并研究栖息地管理策略的潜在影响。我们开发了基于个体的模型,该模型从GIS数据模拟了农业景观的动态,同时考虑了对昆虫种群生命周期具有重要影响的作物轮作和作物物候。时空随机性是通过农民应用的典型土地覆被轮换和用户根据其需求直接设置的作物物候模拟的。时空分布图是根据最初的真实农业景观和合理的土地覆被轮换计算得出的。我们使用了Gama模拟平台,该平台具有强大的内置功能,可以进行空间数据处理和汇总种群动态。景观模型已应用于位于法国西南部长期社会生态研究站点的案例研究。我们描述了模型的特征,并提出了可视化,时空作物动态以及与生态研究相关的可能用途方面的一些输出。该模型旨在适用于任何农业景观,并且可以与几乎所有人口动态相关联。

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