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首页> 外文期刊>Frontiers in Ecology and Evolution >Applying the Aboveground-Belowground Interaction Concept in Agriculture: Spatio-Temporal Scales Matter
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Applying the Aboveground-Belowground Interaction Concept in Agriculture: Spatio-Temporal Scales Matter

机译:地上-地下互动概念在农业中的应用:时空尺度问题

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Interactions between aboveground and belowground organisms are important drivers of plant growth and performance in natural ecosystems. Making practical use of such above-belowground biotic interactions offers important opportunities for enhancing the sustainability of agriculture, as it could favour crop growth, nutrient supply, and defence against biotic and abiotic stresses. However, the operation of above- and belowground organisms at different spatial and temporal scales provides important challenges for application in agriculture. Aboveground organisms, such as herbivores and pollinators, operate at a spatial scales that exceeds individual fields and are highly variable in abundance within growing seasons. In contrast, pathogenic, symbiotic, and decomposer soil biota operate at much more localized spatial scales from individual plant species to patches of square metres, however, they generate legacy effects on plant performance that may last from single to multiple years. The challenge is to promote pollinators and suppress pests at the landscape and field scale, and connect these by creating positive legacy effects of local plant-soil interactions for next generations of plants. The aim of the present paper is to explore where current ecological knowledge on above- and belowground biotic interactions can be used to increase agricultural sustainability. Then, we highlight the need to explicitly consider the spatio-temporal scales at which aboveground and belowground organisms operate. We identified that successful integration of above-belowground biotic interactions requires developing crop rotations and intercropping systems that create positive local soil legacy effects for neighbouring as well subsequent crops. These configurations may then be used as building blocks to design landscapes that accommodate beneficial aboveground communities with respect to their required resources. For successful adoption of above-belowground interactions in agriculture there is a need for context-specific solutions, as well as sound socio-economic embedding.
机译:地下和地下生物之间的相互作用是植物在自然生态系统中生长和生长的重要驱动力。实际利用这种地下生物互动为增强农业的可持续性提供了重要机会,因为它可能有利于作物生长,营养供应以及防御生物和非生物胁迫。但是,地上和地下生物在不同时空尺度上的运行为农业应用提出了重要挑战。地上生物,例如草食动物和传粉媒介,在超过单个田地的空间尺度上运转,并且在生长季节内丰度变化很大。相比之下,致病性,共生性和分解性土壤生物区系在从单个植物物种到平方米的更大范围的局部空间尺度上运行,但是,它们对植物性能产生的遗产影响可能持续一到几年。面临的挑战是在景观和田地范围内促进传粉媒介和抑制害虫,并通过为下一代植物创造本地植物-土壤相互作用的积极遗产效应,将其联系起来。本文的目的是探索在哪里可以利用有关地下和地下生物相互作用的最新生态知识来提高农业的可持续性。然后,我们强调有必要明确考虑地上和地下生物活动的时空尺度。我们确定,地下生物相互作用的成功整合需要发展作物轮作和间作系统,从而为邻近及后续作物创造积极的当地土壤遗产效应。然后,可以将这些配置用作构建基块,以设计景观,以适应其所需资源方面的有益地上社区。为了在农业中成功地采用地下互动,需要针对具体情况的解决方案以及良好的社会经济嵌入。

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