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Modelling trade-offs between livestock grazing and wader conservation in a grassland agroecosystem

机译:草地农业生态系统中放牧和涉水保护之间的权衡模型

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The objective of this study was to model the trade-offs between ecological and productive performance of a grassland agroecosystem. We developed a dynamic model linking grass dynamics controlled by livestock grazing to stochastic population dynamics of two wader bird species with high conservation value. Bird dynamics were driven by both direct and indirect effects of grazing. Viable control framework was used to predict grazing strategies ensuring production and conservation and to generate the whole trade-off curve between ecological and productive performance. Bird population size was used as an indicator of ecological performance and the total number of grazing days defined productive performance. Model results show that conciliating ecological and productive performance implies a temporal shift in grazing sequences. The best ecological performance was obtained at intermediate levels of productive performance. Without grazing or with too low a grazing intensity, it was not possible to maintain any of the bird populations due to the indirect effects of grazing on habitat quality. However, too high a level of grazing implied fast population decline for both populations due to direct negative effects of grazing on nest survival. Field data on current grazing regimes and grass height showed a low proportion of suitable fields in our case study area. This result indicates an antagonism between direct and indirect effects of grazing on wader birds, implying the need of very specific management of grassland. Our results illustrate the fact that European grasslands are anthropic habitats which are highly dependent on human activity. In such habitats, trade-off curves are not expected to be strictly decreasing or increasing.
机译:这项研究的目的是模拟草地农业生态系统的生态性能与生产性能之间的权衡。我们建立了一个动态模型,将牲畜放牧控制的草动态与具有高保护价值的两种涉禽物种的随机种群动态联系起来。鸟类动态是由放牧的直接和间接影响所驱动。可行的控制框架用于预测确保生产和保护的放牧策略,并生成生态和生产绩效之间的权衡曲线。鸟类数量被用作生态绩效的指标,放牧天数定义了生产绩效。模型结果表明,调和生态和生产绩效意味着放牧顺序随时间变化。在生产性能的中间水平上获得了最佳的生态性能。没有放牧或放牧强度过低,由于放牧对栖息地质量的间接影响,就不可能维持任何鸟类数量。然而,由于放牧对巢生存的直接负面影响,太高的放牧水平意味着这两个种群的种群快速下降。在我们的案例研究区域中,有关当前放牧方式和草高的田间数据显示,合适田地的比例较低。该结果表明放牧对涉禽的直接和间接影响之间存在拮抗作用,这意味着需要对草原进行非常特殊的管理。我们的结果说明了一个事实,即欧洲草原是高度依赖人类活动的人类栖息地。在这样的栖息地中,折衷曲线不会严格减少或增加。

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