首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >The cropping systems mosaic: how does the hidden heterogeneity of agricultural landscapes drive arthropod populations? (Special Issue: Landscape ecology and biodiversity in agricultural landscapes.)
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The cropping systems mosaic: how does the hidden heterogeneity of agricultural landscapes drive arthropod populations? (Special Issue: Landscape ecology and biodiversity in agricultural landscapes.)

机译:种植系统镶嵌:农业景观的隐藏异质性如何驱动节肢动物种群? (特刊:农业景观中的景观生态学和生物多样性。)

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摘要

Landscape ecology has emphasized the key role of spatial heterogeneity as a driver of ecological processes, which has led to a shift from a patch-matrix to a landscape mosaic representation of landscapes. However, in agricultural landscapes, the role of heterogeneity for biodiversity is often studied by considering (semi-) natural elements regardless of the functional heterogeneity of the cultivated mosaic. This mosaic, which emerges from the organization of cropping systems by farmers, is not just heterogeneous in space but also strongly dynamic (i.e. temporally heterogeneous) due to crop phenology, management and sequence. In this paper, based on agronomic and ecological literature we highlight the heterogeneous properties of the cropping system mosaics in space and time, and the implications of this "hidden" heterogeneity for controlling of arthropod population dynamics and persistence. An illustration is then given to propose different methodological approaches to map the hidden heterogeneity of agricultural landscapes. This conceptual and methodological framework concerns various species in agro-ecosystems, including crop and multi-habitat species, as well as species that only disperse through the crop mosaic. This paper suggests that the design of the cropping system mosaics could be complementary to the design of natural areas to manage populations, notably for species of economic interest (pests, natural enemies or pollinators). More empirical work on this topic is crucial, which will require new methodological approaches.
机译:景观生态学强调了空间异质性作为生态过程驱动因素的关键作用,这导致了从斑块矩阵向景观的景观马赛克表示的转变。但是,在农业景观中,经常通过考虑(半)自然元素来研究生物多样性异质性对生物多样性的作用,而与栽培马赛克的功能异质性无关。由于农民的物候,管理和顺序,这种马赛克是由农民通过种植系统的组织而产生的,它不仅在空间上是异质的,而且还具有很强的动态性(即时间上是异质的)。在本文中,基于农艺学和生态学文献,我们着重介绍了种植系统镶嵌物在空间和时间上的异质性,以及这种“隐藏”异质性对节肢动物种群动态和持久性控制的意义。然后给出一个示例,以提出不同的方法论方法来绘制农业景观的隐藏异质性。这一概念和方法框架涉及农业生态系统中的各种物种,包括作物和多生境物种,以及仅通过作物花叶散布的物种。本文建议,种植系统镶嵌图的设计可以与自然区域设计相辅相成,以管理种群,尤其是对具有经济利益的物种(小甜菜,天敌或授粉媒介)进行管理。关于该主题的更多实证研究至关重要,这将需要新的方法论方法。

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