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Multiple cropping systems as drivers for providing multiple ecosystem services: from concepts to design

机译:多种种植系统作为提供多种生态系统服务的驱动力:从概念到设计

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摘要

Provisioning services, such as the production of food, feed, and fiber, have always been the main focus of agriculture. Since the 1950s, intensive cropping systems based on the cultivation of a single crop or a single cultivar, in simplified rotations or monocultures, and relying on extensive use of agrochemical inputs have been preferred to more diverse, self-sustaining cropping systems, regardless of the environmental consequences. However, there is increasing evidence that such intensive agroecosystems have led to a decline in biodiversity as well as threatening the environment and have damaged a number of ecosystem services such as the biogeochemical nutrient cycles and the regulation of climate and water quality. Consequently, the current challenge facing agriculture is to ensure the future of food production while reducing the use of inputs and limiting environmental impacts and the loss of biodiversity. Here, we review examples of multiple cropping systems that aim to use biotic interactions to reduce chemical inputs and provide more ecosystem services than just provisioning. Our main findings are the identification of underlying ecological processes and management strategies related to the provision of pairs of ecosystem services namely food production and a regulation service. We also found gaps between ecological knowledge and the constraints of agricultural practices in taking account of the interactions and possible trade-offs between multiple ecosystem services as well as socioeconomic constraints. We present guidelines for the design of multiple cropping systems combining ecological, agricultural, and genetic concepts and approaches.
机译:诸如食物,饲料和纤维的生产等供应服务一直是农业的主要重点。自1950年代以来,以单一轮作或单一栽培品种的栽培,简化轮作或单一栽培以及广泛使用农用化学品投入物为基础的集约化耕作系统已成为更多样化,自我维持的耕作系统的优先选择,无论环境后果。但是,越来越多的证据表明,这种集约化的农业生态系统导致了生物多样性的下降以及对环境的威胁,并破坏了许多生态系统服务,例如生物地球化学养分循环以及气候和水质的调节。因此,农业目前面临的挑战是确保粮食生产的未来,同时减少投入的使用并限制环境影响和生物多样性的丧失。在这里,我们回顾了多个种植系统的示例,这些系统旨在利用生物相互作用来减少化学物质的投入并提供更多的生态系统服务,而不仅仅是供应。我们的主要发现是确定与提供成对的生态系统服务(即粮食生产和监管服务)相关的基本生态过程和管理策略。我们还考虑到多种生态系统服务之间的相互作用和可能的权衡以及社会经济限制,发现了生态知识与农业实践的限制之间的差距。我们提出了结合生态,农业和遗传概念和方法的多种种植系统设计指南。

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